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[Standardization Committee for Haematology. External Quality Assurance Program for General Hematology. Evaluation of the 1994 results].

UNLABELLED: Since 1994, the Standardisation Committee for Haematology publishes yearly the results of its external quality assurance programme (EQAPH), after it has been improved and even integrated in the Health Services of some autonomous communities. METHODS: Four hundred and seventy-three laboratories take part in EQAPH. The evaluation of the haematological records is carried out every year from the results of two whole blood samples. Two samples of lyophillised plasma are sent every month to participant laboratories in order to assess prothrombin time (PT), partial thromboplastin time (PTT) and fibrinogen. Samples are sent every three months for antithrombin III (AT-III) determination. According to the types of autoanalysers used, 9 groups have been established: Group I (Technicon H* and H-6000), group II (Technicon H*2 and H*3), group III (Coulter MaxM, STKS, Cobas Argos and Cell-Dyn 3000/3500), group IV (Coulter STKR), group V (Coulter JS/JT), group VI (Coulter S/T, Cobas Helios/Minos), group VII (Sysmex E/NE), group VIII (Sysmex K-1000), and group IX (other semi-automated counters). Three groups are established for general coagulation tests and two others for AT-III. The value of the mean of all results (consensus mean) and of each particular group (group mean) are used as statistical methods. The results are expressed as: (1) coefficient of variation, % (CV); (2) deviation index (DI); DI values attained with respect to the same group (or method) or all groups (or methods) allowed us to classify the results in four categories: excellent (0 < DI < 0.5), good (0.5 < DI < 1.0), satisfactory (1.0 < DI < 2.0), and out of acceptable limits (ID > 2.0); (3) Youden graphs or graphic representations of DI calculated from the analysis of the control specimens. RESULTS: Group I yielded lesser values for leucocyte count (0.221) and higher for MCH (0.833). Group II showed high DI values for PCV (0.933) and MCV (1.146). Group III had lower values for red cell count (0.097), haemoglobin concentration (0.133) and MCH (0.91). Group IV showed lower platelet count. Group V had higher haemoglobin concentration values. Group VI yielded higher DI in the platelet count and group VII in the white cell count. Group VII showed the lowest DI for MCV and MHC. Group IX had high values for red cell count and MCH. In the coagulation field, group I had higher values for PT and AT-III. Group II showed higher DI values for PTT and fibrinogen. The highest CV values were seen in groups VIII and IX. The lowest values were present in group II for haemoglobin, IV for MCH, in V for PCV and MCV, in VII for red cell count and MCH, in VII for white cell count and in VII for platelet count. The coagulation tests showed lower CV values than cytometry, the lowest being for PT in group I and PTT and fibrinogenein group II. With regard to the influence of acceptable results on adverse ones within this group, the percentage of laboratories with mean DI over 2 were calculated. Thus, the laboratories achieved 43.5% of values within acceptable limits for platelet count and 56.7% for white cell count. Regarding the PCV, out of 47.9% of the laboratories, only 1.0% showed high deviation of some results. In the coagulation parameters, of the 37.2 in this group for AT-III, 32.4% showed a mean DI over 2. CONCLUSIONS: Participation in External Quality Assurance programmes contributes to the comparability of the results provided by different laboratories, thus increasing their accuracy and improving the quality of patient care.

Blood Cell Count↗

Clinical performance of leukocyte differential on the new Roche Cobas Vega haematological analyzer.

The Roche Cobas Vega is a five-part differential haematological analyzer evolving from the former Cobas Helios, Argos and Micros. As the leukocyte differential of Cobas Vega displays several interesting features, we analyzed its clinical performance and compared it either to three other commercial haematological analyzers (Technicon-Bayer H*2, Coulter STKS and Abbott CD-3500) or to the manual reference method, as described in the National Committee for Clinical Laboratory Standards (NCCLS) H20-A protocol. Within- and between-batch coefficients of variations (CVs) of the white blood cell differential were satisfactory and close, or even better than the ones reported for the other instruments: 0.81% (neutrophils), 1.87% (lymphocytes), 6.76% (monocytes), 7.73% (eosinophils) and 22.55% (basophils). The identification of abnormalities in the white blood cell differential was obtained either on the basis of the instrument-specific ranges or on the generation of one or more flags by comparison with results of the manual reference method. The Vega demonstrated remarkable performance in terms of specificity (90.0%), sensitivity (91.6%) and both positive (97.7%) and negative (69.1%) predictive values; likewise, the global efficiency was the best (90.3%) among the analyzers we evaluated. The flags generated in the presence of morphological abnormalities of the samples displayed excellent sensitivity (from 88.9% to 100%), specificity (from 93.5% to 98.3%) and satisfactory positive (from 51.1% to 66.7%) and negative (from 98.3% to 100%) predictive values. We conclude that the analytical performance of the new Cobas Vega haematological analyzer can significantly improve the identification of various haematological abnormalities as an important contribution to the accuracy is provided by the new staining for granulocytes.

Evaluation Studies as Topic↗

Evolutionarily conserved mechanisms regulating neural development: lessons from the development of Drosophila peripheral nervous systems.

Functions of genes regulating the development of Drosophila peripheral nervous systems are summarized herein. These genes can be classified into 6 groups: <1> prepattern genes, <2> proneural genes, <3> neurogenic genes, <4> neuronal precursor genes, <5> neuronal precursor type selector genes, and <6> cell-division and lineage genes. The mechanisms described herein provide excellent paradigms in the regulation of the development of other tissues in Drosophila, as well as in other organisms, including vertebrates. The roles of two different inhibitory mechanisms, i.e. Notch-signaling and Argos, in the development of Drosophila neural precursor cells are also discussed.

Animals↗

Prediction of secondary structural content of proteins from their amino acid composition alone. I. New analytic vector decomposition methods.

The predictive limits of the amino acid composition for the secondary structural content (percentage of residues in the secondary structural states helix, sheet, and coil) in proteins are assessed quantitatively. For the first time, techniques for prediction of secondary structural content are presented which rely on the amino acid composition as the only information on the query protein. In our first method, the amino acid composition of an unknown protein is represented by the best (in a least square sense) linear combination of the characteristic amino acid compositions of the three secondary structural types computed from a learning set of tertiary structures. The second technique is a generalization of the first one and takes into account also possible compositional couplings between any two sorts of amino acids. Its mathematical formulation results in an eigenvalue/eigenvector problem of the second moment matrix describing the amino acid compositional fluctuations of secondary structural types in various proteins of a learning set. Possible correlations of the principal directions of the eigenspaces with physical properties of the amino acids were also checked. For example, the first two eigenvectors of the helical eigenspace correlate with the size and hydrophobicity of the residue types respectively. As learning and test sets of tertiary structures, we utilized representative, automatically generated subsets of Protein Data Bank (PDB) consisting of non-homologous protein structures at the resolution thresholds < or = 1.8A, < or = 2.0A, < or = 2.5A, and < or = 3.0 A. We show that the consideration of compositional couplings improves prediction accuracy, albeit not dramatically. Whereas in the self-consistency test (learning with the protein to be predicted), a clear decrease of prediction accuracy with worsening resolution is observed, the jackknife test (leave the predicted protein out) yielded best results for the largest dataset (< or = 3.0A, almost no difference to the self-consistency test!), i.e., only this set, with more than 400 proteins, is sufficient for stable computation of the parameters in the prediction function of the second method. The average absolute error in predicting the fraction of helix, sheet, and coil from amino acid composition of the query protein are 13.7, 12.6, and 11.4%, respectively with r.m.s. deviations in the range of 8.6 divided by 11.8% for the 3.0 A dataset in a jackknife test. The absolute precision of the average absolute errors is in the range of 1 divided by 3% as measured for other representative subsets of the PDB. Secondary structural content prediction methods found in the literature have been clustered in accordance with their prediction accuracies. To our surprise, much more complex secondary structure prediction methods utilized for the same purpose of secondary structural content prediction achieve prediction accuracies very similar to those of the present analytic techniques, implying that all the information beyond the amino acid composition is, in fact, mainly utilized for positioning the secondary structural state in the sequence but not for determination of the overall number of residues in a secondary structural type. This result implies that higher prediction accuracies cannot be achieved relying solely on the amino acid composition of an unknown query protein as prediction input. Our prediction program SSCP has been made available as a World Wide Web and E-mail service.

Amino Acids↗

Prediction of secondary structural content of proteins from their amino acid composition alone. II. The paradox with secondary structural class.

The success rates reported for secondary structural class prediction with different methods are contradictory. On one side, the problem of recognizing the secondary structural class of a protein knowing only its amino acid composition appears completely solved by simply applying jury decision with an elliptically scaled distance function. Chou and coworkers repeatedly (see Crit. Rev. Biochem. Mol. Biol. 30:275-349, 1995) published prediction accuracies near 100%. On the other hand, traditional secondary structure prediction techniques achieve success rates of about 70% for the secondary structural state per residue and about 75% for structural class only with extensive input information (full sequence of the query protein, its amino acid composition and length, multiple alignments with homologous sequences). In this article, we resolve the paradox and consider (1) the question of the secondary structural class definition, (2) the role of the representativity of the test set of protein tertiary structure for the current state of the Protein Data Bank (PDB); and (3) we estimate the real impact of amino acid composition on secondary structural class. We formulate three objective criteria for a reasonable definition of secondary structural classes and show that only the criterion of Nakashima et al. (J. Biochem. 99:153-162, 1986) complies with all of them. Only this definition matches the distribution of secondary structural content in representative PDB subsets, whereas other criteria leave many proteins (up to 65% of all PDB entries) simply unassigned. We review critically specialized secondary-structural class prediction methods, especially those of Chou and coworkers, which claim almost 100% accuracy using only amino acid composition, and resolve the paradox that these prediction accuracies are better than those from secondary structure predictions from multiple alignments. We show (i) that these techniques rely on a preselection of test sets which removes irregular proteins and other proteins without any class assignment (about 35% of all PDB entries); and (ii) that even for preselected representative test sets, the success rate drops to 60% and lower for a 4-type classification (alpha, beta, alpha + beta, alpha/beta). The prediction accuracies fall to about 50% if the secondary structural class definition of Nakashima et al. is applied and only few irregular proteins are preselected and removed from automatically generated, representative subsets of the PDB. We have applied two new vector decomposition methods for secondary structural content prediction from amino acid composition alone, with and without consideration of amino acid compositional coupling in the learning set of tertiary structures respectively, to the problem of class prediction and achieve about 60% correct assignment among four classes (alpha, beta, mixed, irregular) as well as single sequence-based secondary structure prediction methods like GORIII and COMBI. Our results demonstrate that 60% correctness is the upper limit for a 4-type class prediction from amino acid composition alone for an unknown query protein and that consideration of compositional coupling does not improve the prediction success. The prediction program SSCP offering secondary structural class assignment for query compositions and sequences has been made available as a World Wide Web and E-mail service.

Amino Acids↗

Hydrophobic patches on the surfaces of protein structures.

A survey of hydrophobic patches on the surface of 112 soluble, monomeric proteins is presented. The largest patch on each individual protein averages around 400 A2 but can range from 200 to 1,200 A2. These areas are not correlated to the sizes of the proteins and only weakly to their apolar surface fraction. Ala, Lys, and Pro have dominating contributions to the apolar surface for smaller patches, while those of the hydrophobic amino acids become more important as the patch size increases. The hydrophilic amino acids expose an approximately constant fraction of their apolar area independent of patch size; the hydrophobic residue types reach similar exposure only in the larger patches. Though the mobility of residues on the surface is generally higher, it decreases for hydrophilic residues with increasing patch size. Several characteristics of hydrophobic patches catalogued here should prove useful in the design and engineering of proteins.

Amino Acids↗

A method for detecting hydrophobic patches on protein surfaces.

A method for the detection of hydrophobic patches on the surfaces of protein tertiary structures is presented. It delineates explicit contiguous pieces of surface of arbitrary size and shape that consist solely of carbon and sulphur atoms using a dot representation of the solvent-accessible surface. The technique is also useful in detecting surface segments with other characteristics, such as polar patches. Its potential as a tool in the study of protein-protein interactions and substrate recognition is demonstrated by applying the method to myoglobin, Leu/IIe/Val-binding protein, lipase, lysozyme, azurin, triose phosphate isomerase, carbonic anhydrase, and phosphoglycerate kinase. Only the largest patches, having sizes exceeding random expectation, are deemed meaningful. In addition to well-known hydrophobic patches on these proteins, a number of other patches are found, and their significance is discussed. The method is simple, fast, and robust. The program text is obtainable by anonymous ftp.

Models, Molecular↗

Seventy-five percent accuracy in protein secondary structure prediction.

In this study we present an accurate secondary structure prediction procedure by using an query and related sequences. The most novel aspect of our approach is its reliance on local pairwise alignment of the sequence to be predicted with each related sequence rather than utilization of a multiple alignment. The residue-by-residue accuracy of the method is 75% in three structural states after jack-knife tests. The gain in prediction accuracy compared with the existing techniques, which are at best 72%, is achieved by secondary structure propensities based on both local and long-range effects, utilization of similar sequence information in the form of carefully selected pairwise alignment fragments, and reliance on a large collection of known protein primary structures. The method is especially appropriate for large-scale sequence analysis of efforts such as genome characterization, where precise and significant multiple sequence alignments are not available or achievable.

Algorithms↗

NADP-dependent enzymes. I: Conserved stereochemistry of cofactor binding.

The ubiquitous redox cofactors nicotinamide adenine dinucleotides [NAD and NADP] are very similar molecules, despite their participation in substantially different biochemical processes. NADP differs from NAD in only the presence of an additional phosphate group esterified to the 2'-hydroxyl group of the ribose at the adenine end and yet NADP is confined with few exceptions to the reactions of reductive biosynthesis, whereas NAD is used almost exclusively in oxidative degradations. The discrimination between NAD and NADP is therefore an impressive example of the power of molecular recognition by proteins. The many known tertiary structures of NADP complexes affords the possibility for an analysis of their discrimination. A systematic analysis of several crystal structures of NAD(P)-protein complexes show that: 1) the NADP coenzymes are more flexible in conformation than those of NAD; 2) although the protein-cofactor interactions are largely conserved in the NAD complexes, they are quite variable in those of NADP; and 3) in both cases the pocket around the nicotinamide moiety is substrate dependent. The conserved and variable interactions between protein and cofactors in the respective binding pockets are reported in detail. Discrimination between NAD and NADP is essentially a consequence of the overall pocket and not of a few residues. A clear fingerprint in NAD complexes is a carboxylate side chain that chelates the diol group at the ribose near the adenine, whereas in NADP complexes an arginine side chain faces the adenine plane and interacts with the phosphomonoester. The latter type of interaction might be a general feature of recognition of nucleotides by proteins. Other features such as strand-like hydrogen bonding between the NADP diphosphate moieties and the protein are also significant. The NADP binding pocket properties should prove useful in protein engineering and design.

Animals↗

NADP-dependent enzymes. II: Evolution of the mono- and dinucleotide binding domains.

Nicotinamide adenine dinucleotides [NAD and NADP with both referred to as NAD(P)] are among the more diffuse redox cofactors. Despite their stereochemical similarity where the only difference is a phosphomonoester on the ribose near the adenine of NADP, they show different biochemical reactivities with NAD behaving as an oxidant and NADP as a reductant. NAD(P)-dependent enzymes generally share a common open alpha/beta fold with few exceptions only recently structurally characterized. This study of the molecular evolution of the NAD(P) binding domains, possible given the large number of known molecular structures, addresses two main questions: 1) can a common fold exist in different biological systems (divergent evolution) and 2) does a relationship exist among similar biological systems that display different folds (convergent evolution)? Both the structures of mono- and dinucleotide binding domains have been classified by cluster analysis based on the similarity evaluated by their main chain C alpha superposition. Moreover, the cofactor conformations and the stereochemical characteristics of their pockets have also been classified by analogous methods on the basis of the published tertiary structures. Two primary results appear: 1) the classification of the mononucleotide binding domains is different from that of the dinucleotide binding folds and 2) both divergent and convergent evolutionary pathways can be hypothesized, the latter less frequently observed and less pronounced but nevertheless evident. The generally accepted hypothesis that dinucleotide binding domains have evolved by gene duplication of primordial genes coding for the smaller mononucleotide binding domains is acceptable but the two halves of the resulting dinucleotide binding domains are evolutionarily uncorrelated. The NH2-terminal mononucleotide binding domain is less variable than the COOH-terminal half, probably because it involves the binding of the ADP moiety of NAD(P) invariant in all examined systems. There is evidence to postulate that evolutionary pathways for NAD(P)-dependent enzymes are both divergent and convergent. In fact, nearly all combinations of similarity dissimilarity in overall fold, cofactor conformation, and cofactor binding pocket structural characteristics for each enzyme pair examined are possible. The NAD(P)-dependent enzymes apparently provide a canonical example of an evolutionary principle that "anything goes."

Animals↗

A proteomic analysis of erythromycin resistance in Streptococcus pneumoniae.

Streptococcus pneumoniae is a significant human pathogen which is an important cause of pneumonia and bacteraemia. Over the past few years the incidence of antibiotic resistance among clinical isolates of S. pneumoniae has increased. Penicillin resistance is now widespread and the frequency of isolates that are resistant to erythromycin has risen. Erythromycin resistance in S. pneumoniae follows two basic patterns. The MLS erythromycin-resistant phenotype is due to the enzymatic methylation of ribosomal RNA that blocks erythromycin binding to the ribosome. Alternatively, in isolates of the M phenotype, a more recently documented mechanism, resistance is associated with an active efflux process that reduces intracellular levels of erythromycin. We used two-dimensional electrophoresis to examine the proteins synthesised by erythromycin-susceptible and -resistant S. pneumoniae. Erythromycin-resistant S. pneumoniae with the M phenotype showed a significantly increased synthesis of a 38,500 Dalton (pI 6.27) protein compared to susceptible isolates. Peptide mass mapping was used to identify the 38,500 Dalton protein as glyceraldehyde-3-phosphate dehydrogenase (GAPDH). It was demonstrated that S. pneumoniae synthesised at least three forms of GAPDH that differed in their isoelectric points. The form of GAPDH possessing the most basic pI showed the increased synthesis in the erythromycin-resistant S. pneumoniae isolates. Alterations in the synthesis of GAPDH were only found for those erythromycin-resistant isolates possessing the M phenotype. S. pneumoniae isolates with the MLS phenotype were indistinguishable from the susceptible strains using the analytical conditions employed for the current study. The possible role of GAPDH in erythromycin resistance of S. pneumoniae is considered.

Anti-Bacterial Agents↗

Evolution of coxsackie B virus during in vitro persistent infection: detection of protein mutations using two-dimensional polyacrylamide gel electrophoresis.

Serotype 5 coxsackie B virus (CBV5) can establish in vitro persistent infections in human rhabdomyosarcoma (RD) cells. This paper describes the characterisation of the virus released from the persistently infected RD cell line designated piRD-3673. Although infectious virus was released for 42 sequential passages of piRD-3673 cells, no gross virus-specific cytopathic effect was detected when the cells were examined by light microscopy. Two-dimensional polyacrylamide gel electrophoresis was used to compare the virus released from piRD-3673 cells with the CBV5 isolate (CBV-3673) used to initiate the persistent virus infection. Two of the virus intracellular proteins (apparent molecular weights 33,000 and 39,000, designated p33 and p39, respectively) increased in their net basic charge for the virus released from piRD-3673 cells compared to CBV-3673; a reduction in the apparent molecular weights of p33 and p39 was also observed. The charge alteration for both p33 and p39 was a two-stage process, the accumulative effect of which resulted in p33 increasing in pI from 6.14 to 6.53 and p39 increasing in pI from 6.29 to 6.63. The first mutation of p33 and p39 occurred between passages 7 and 10 of piRD-3673 cells and affected both the charge and apparent molecular weight of these two proteins. The second mutation at passage 15 of piRD-3673 cells caused only a change in the charge of p33 and p39. Two other virus proteins (p54 and p75) showed no evidence of mutation over the same passage history of piRD-3673 cells. The virus released from piRD-3673 cells also differed from CBV-3673 by two further criteria, a reduction in plaque-forming efficiency in HEp-2 cells and increased virus replication in RD cells. These data on virus evolution are discussed in relation to the maintenance of persistent CBV infections and the presence of naturally occurring CBV variants.

Coxsackievirus Infections↗

Characterisation of Haemophilus influenzae proteins by two-dimensional gel electrophoresis.

The proteins of nontypable and type b Haemophilus influenzae isolates were characterised using two-dimensional polyacrylamide gel electrophoresis (2-D PAGE). Coomassie Brilliant. Blue R-250 was used for protein detection. Two hundred and twenty eight proteins were resolved from whole cell lysates prepared from a standard nontypable H. influenzae strain (designated HI-64443) when isoelectric focusing was used for the first-dimensional separation of 2-D PAGE. When nonequilibrium pH gel electrophoresis (NEPHGE) was used to separate basic proteins in the first dimension, 50 proteins were detected for HI-64443; 20 of the basic proteins detected were considered to be unique for this separation protocol. The apparent molecular weights and isoelectric points were determined for 82 of the proteins resolved for HI-64443. The variation of the proteins from the standard bacterial strain (HI-64443) was determined for nontypable H. influenzae isolates. On the basis of their electrophoretic mobilities, 17.5% of the proteins of HI-64443 were shared by four other nontypable H. influenzae strains analysed. These data identified both conserved and variable proteins among the nontypable H. influenzae isolates analysed. The results obtained indicated that 2-D PAGE was able to discriminate nontypable H. influenzae into population clones identified by other procedures. The 2-D protein profiles obtained for type b H. influenzae strains were similar to those obtained for nontypable H. influenzae strains. The extent of the protein variation observed between type b and nontypable H. influenzae strain was similar to that observed among nontypable strains alone. These data are discussed in relation to the application of 2-D PAGE as a tool for studies on bacterial epidemiology and for the analysis of the genome structure and gene expression of Haemophilus influenzae.

Bacterial Proteins↗

Analysis of protein synthesis by two-dimensional gel electrophoresis in T cells persistently infected with coxsackie B virus.

Coxsackie B viruses (CBV) have been implicated in various human diseases that present as either limited acute infections or prolonged chronic infections. A number of investigations have suggested that a virus-induced immune dysfunction might play a role in in vivo pathogenesis. In the current study, we describe CBV infection of two human T cell-derived cell lines (Jurkat and MOLT-4 cells) as potential models for CBV infection of lymphocytes. Short term (up to 144 h post-infection) CBV infection of either cell line resulted in a decline in the viability of the cell population together with an approximate 10-fold rise in the titre of infectious virus during the period of incubation. Analyses of the intracellular proteins by two-dimensional polyacrylamide gel electrophoresis (2-D PAGE) demonstrated that although putative virus proteins were detectable there was minimal inhibition of the cellular protein synthesis following CBV infection. This contrasted with the more permissive and highly lytic CBV infection of HEp-2C cells (Cash, Electrophoresis 1991, 10, 793-800). Persistently infected cell lines from both Jurkat and MOLT-4 cells (piJURKAT-3673 and piMOLT-2667 cells) were established. Analyses of intracellular protein synthesis of these persistently infected cell lines showed the synthesis of novel proteins not detected for the corresponding uninfected parental cell line. There were no significant alterations in overall cellular protein synthesis detectable by the small format 2-D PAGE system employed in these investigations. The data presented in the current investigation will contribute towards studies on virus-induced responses of specific biological functions associated with T cells.

Cell Line↗

Development of a Haemophilus two-dimensional protein database.

Members of the Haemophilus genus are responsible for various human infections including respiratory infections and meningitis. The complete nucleotide sequence of the Rd strain of Haemophilus influenzae has been reported and represents a valuable resource to investigate gene expression within this bacterial group. We described previously the application of two-dimensional polyacrylamide gel electrophoresis (2-D PAGE) to characterise the proteins of Haemophilus influenzae (Cash et al., Electrophoresis 1995, 16, 135-148). We have extended these data with comparative studies of the proteins from other members of the Haemophilus genus (specifically H. parainfluenzae, H. haemolyticus and H. parahaemolyticus) to identify homologous proteins and, by extension, the genes encoding them, among these bacteria. The proteins extracted from each of these bacterial isolates were compared by coelectrophoresis to the 2-D protein profile of the reference nontypable strain of H. influenzae (HI-64443) used as the basis for the 2-D protein database. A composite reference 2-D protein profile of HI-64443 was derived from three independent analyses of the soluble bacterial proteins. Between 21% and 37% of the HI-64443 proteins from the reference 2-D protein profile comigrated with proteins in the other isolates from the Haemophilus genus. This compared with 62% and 64% comigration when HI-64443 was compared with the Eagan and Rd strains of H. influenzae, respectively. The 2-D protein profile of the Rd strain of H. influenzae was compared to that of HI-64443 by coelectrophoresis; 64% of the proteins detected for the Rd strain comigrated with proteins found for HI-64443 when analysed in parallel. The capacity of 2-D PAGE to investigate global interactions of gene expression was applied to the analysis of superoxide dismutase (SOD) expression in H. influenzae strain Eagan. A "knock-out" mutant in the sodA gene which encodes [Mn]-SOD was characterised with respect to protein synthesis compared to the parental isolate. From these analyses, the primary product of sodA was provisionally identified as a protein with a molecular mass of 25500 Da and an estimated pI of 6.55. Quantitative changes in the expression of two other proteins in the SOD mutant were detected by comparison with the parental isolate. These data are discussed in relation to the development of a 2-D protein database for H. influenzae and related bacteria to investigate genome homologies and gene expression.

Bacterial Proteins↗

Growth-induced changes in the proteome of Helicobacter pylori.

Helicobacter pylori is a major human pathogen that is responsible for a number of gastrointestinal infections. We have used 2-DE to characterise protein synthesis in bacteria grown either on solid agar-based media or in each of two broth culture media (Brucella and brain heart infusion (BHI) broth). Significant differences were observed in the proteomes of bacteria grown either on agar-based or in broth media. Major changes in protein abundance were identified using principal component analysis (PCA), which delineated the profiles derived for the three key growth conditions (i.e. agar plates, Brucella and BHI broth). Proteins detected across the gel series were identified by peptide mass mapping and Edman sequencing. A number of proteins associated with protein synthesis in general as well as specific amino acid synthesis were depressed in broth-grown bacteria compared to plate-grown bacteria. A similar reduction was also observed in the abundance of proteins involved in detoxification. Two of the most abundant spots, identified as UreB and GroEL, in plate-grown bacteria showed a >140-fold drop in abundance in bacteria grown in Brucella broth compared to bacteria grown on agar plates. Two protein spots induced in bacteria grown in broth culture were both identified as glyceraldehyde 3-phosphate dehydrogenase based on their N-terminal amino acid sequences derived by Edman degradation. The underlying causes of the changes in the proteins abundance were not clear, but it was likely that a significant proportion of the changes were due to the alkaline pH of the broth culture media.

Agar↗

Structural similarity between legumin and vicilin storage proteins from legumes.

The primary structures for several members of both the vicilin and legumin families of storage proteins were examined using a computer routine based on amino acid physical characteristics. The comparison algorithm revealed that sequences from the two families could be aligned and share a number of predicted secondary structural features. The COOH-terminal half of the subunits in both families displayed a highly conserved core region that was largely hydrophobic and in which a high proportion of the residues were predicted to be in beta-sheet conformations. The central region of the molecules which contained mixed areas of predicted helical and sheet conformations showed more variability in residue selection than the COOH-terminal regions. The NH2-terminal segments of subunits from the two different families could not be aligned though they characteristically had a high proportion of residues predicted to be in helical conformations. The feature which most clearly distinguished subunits between the two families was an inserted span in the legumin group with a high proportion of acidic amino acids located between the central and COOH-terminal domains. Residues in this insertion were predicted to exist mainly in helical conformation. Since considerable size variation occurs in this area amongst the legumin subunits, alterations in this region may have a minimal detrimental effect on the structure of the proteins.

Amino Acid Sequence↗

Evidence for a repeating domain in type I restriction enzymes.

The primary structures of the recognition subunit (hsdS) in type I restriction enzymes from three isolates of Escherichia coli were compared and aligned by use of amino acid physical properties. A repeating domain was found in each of the subunits suggesting a pseudo-dimeric structure. Secondary structure predictions delineated two helical regions in each domain which suggested that the recognition subunits may act in a fashion similar to that proposed for repressor and activator molecules; namely, interaction with double-stranded DNA through helices and in two successive major grooves on the same DNA side. One helical motif could provide the specific recognition site and the other, the restriction site.

Amino Acid Sequence↗