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Biomedical subjects

B Wittmann-Liebold

Publications and source records attributed to B Wittmann-Liebold.

At least 73 records · Page 4Linked to original sources

The amino-acid sequences of the Bacillus stearothermophilus ribosomal proteins S17 and S21 and their comparison to homologous proteins of other ribosomes.

Ribosomal proteins S17 and S21 from the moderate thermophile Bacillus stearothermophilus were purified by one-step high-performance liquid chromatography from the 30S-subunit protein mixture employing a semi-preparative reversed-phase C4 column. The complete amino-acid sequences of these proteins were determined by a combination of N-terminal sequencing in picomole quantities of the protein and of appropriate peptide fragments. Proteins S17 and S21 consist of 86 and 55 amino-acid residues, corresponding to molecular masses of 10074 and 6593 Da, respectively. They are homologous to proteins S17 and S21 from the Escherichia coli ribosome, showing 50 and 55% identities in the corresponding regions, respectively. The C-terminal region of protein S21 from B. stearothermophilus has a deletion of 15 residues as compared to the E. coli S21 protein. The evolutionary relationships of the Bacillus proteins to various other members of the S17 and S21 ribosomal protein families are discussed.

Amino Acid Sequence↗

Protein blotting followed by microsequencing.

The use of new membranes such as activated or derivatized glass fibers as well as synthetic membranes, which are compatible with the hazardous sequencing reagents, are described. Precautions to be taken in order to prevent N-terminal blockage of the proteins during electrophoresis and blotting are described, as well as the conditions for protein detection after blotting and protein treatment for in situ amino acid analysis, fragmentation and microsequencing. For a number of standard proteins and bacterial ribosomal proteins microsequence analysis is reported for two commercially available sequencers (Applied Biosystems and Knauer).

Amino Acid Sequence↗

Processing of pseudorabies virus glycoprotein gII.

The glycoprotein complex gII of pseudorabies virus was isolated by immunoprecipitation with the monoclonal antibody M5, which was covalently linked to protein A-Sepharose. After sodium dodecyl sulfate-polyarylamide gel electrophoresis under reducing conditions and blotting onto poly(vinylidene difluoride) membrane, its subunits, gIIa, gIIb, and gIIc, were subjected to N-terminal sequencing. gIIa and gIIb start at position 59 and gIIc starts at position 503 according to the amino acid sequence deduced from the gene, indicating that there is one major protein (gIIa) which is cleaved into the two protein fragments gIIb and gIIc. Protein labeling with 14C-amino acids gave no indication that the three proteins (gIIa, gIIb, and gIIc) of the complex are present in equimolar ratios. It seems that gIIa is only a minor component of the complex, whereas gIIb and gIIc are contained in equimolar amounts.

Amino Acid Sequence↗

Use of a hapten specific anti-dansyl antibody for the localization of ribosomal proteins by immuno electron microscopy.

The fluorescent reagent dansyl chloride has been used as an immunological marker for the electron microscopic localization of ribosomal proteins on the surface of 50S ribosomal subunits. The proteins BstL1 from Bacillus stearothermophilus and EcoL1 from Escherichia coli were dansylated to various degrees and reconstituted into the L1-deficient E. coli 50S subunits from mutant MV17-10. Using antibodies specific to dansyl chloride, both proteins were mapped at the lateral protuberance near the peptidyl transferase center.

Antibody Specificity↗

Blotting of proteins onto Immobilon membranes. In situ characterization and comparison with high-performance liquid chromatography.

The electrophoretic transfer from polyacrylamide gels to Immobilon [poly(vinylidene difluoride)] membranes of various proteins differing in molecular masses from 14,000 to 200,000 was performed, using both a semi-dry blotting apparatus and a standard blotting chamber. The blotted proteins were analyzed and sequenced with and without staining, and the initial yields of the degradation were examined. Furthermore, protein purification by blotting after one- and two-dimensional gel electrophoresis was compared with conventional HPLC methods. Optimum blotting conditions for in situ enzymatic or chemical cleavages of the proteins on the blots are described, and for the in situ hydrolysis followed by amino acid analysis and cysteine determination.

Blotting, Western↗

Sequence similarity between protein B and human apolipoprotein A-IV.

Sequence comparison of protein B (CAMP-factor) with human apolipoprotein A-IV (apo A-IV) revealed 32% similarity between the N-terminal part of protein B and a part of the putative lipid-binding domain of apo A-IV. The significance of this similarity is discussed with respect to the structure/function relationship of protein B.

Amino Acid Sequence↗

An archaebacterial gene from Methanococcus vannielii encoding a protein homologous to the ribosomal protein L10 family.

An open reading frame upstream of the Methanococcus vannielii L12 gene has been detected. The beginning of this open reading frame agrees with the N-terminal region of a protein (MvaL10) which has been isolated from the 50 S ribosomal subunit of M. vannielii and sequenced. The length of this gene is 1008 nucleotides, coding for 336 amino acids. Excellent sequence similarities were found to the L10-like ribosomal proteins from Halobacterium halobium and man. The N-terminal part of the MvaL10 protein shows significant sequence similarities to the E. coli L10 protein. MvaL10 is more than twice as long as E. coli L10 but is of length similar to those of the homologous halobacterial and human proteins. Interestingly, the C-terminal region of MvaL10 shows exceptionally high similarity to the C-terminal sequence of the MvaL12 protein. This is not the case for the E. coli proteins but was also observed for the human, Halobacterium and Sulfolobus proteins.

Amino Acid Sequence↗

The complete amino acid sequence of ribosomal protein S18 from the moderate thermophile Bacillus stearothermophilus.

The amino acid sequence of ribosomal protein S18 from Bacillus stearothermophilus has been completely determined by automated sequence analysis of the intact protein as well as of peptides derived from digestion with Staphylococcus aureus protease at pH 4.0 and cleavage with cyanogen bromide. The carboxy-terminal region was verified by both amino acid analyses of chymotryptic peptides and by mass spectrometry from the terminal region. The protein contains 77 amino acid residues and has an Mr of 8838. Comparison of this sequence with the sequences of the S18 proteins from tobacco and liverwort chloroplasts and E. coli shows a relatively high similarity, ranging from 42 to 55% identical residues with the B. stearothermophilus S18 protein. The regions of homology common to all four proteins consist of several positively charged sections spanning the entire length of the protein.

Amino Acid Sequence↗

Complete nucleotide sequence and gene organization of the broad-host-range plasmid RSF1010.

We present the complete nucleotide sequence of RSF1010, a naturally occurring broad-host-range plasmid belonging to the Escherichia coli incompatibility group Q and encoding resistance to streptomycin and sulfonamides. A molecule of RSF1010 DNA consists of 8684 bp and has a G + C content of 61%. Analysis of the distribution of translation start and stop codons in the sequence has revealed the existence of more than 40 open reading frames potentially capable of encoding polypeptides of 60 or more amino acids. To date, products of eleven such potential RSF1010 genes have been identified through the application of controlled expression vector systems, and for eight of them, the reading frame has been confirmed by N- and/or C-terminal amino acid sequence determinations on the purified proteins. The sequencing results are discussed in relation to the systems of replication, host range, conjugal mobilization and antibiotic resistance determinants associated with the RSF1010 plasmid.

Amino Acid Sequence↗

Cyclophilin and peptidyl-prolyl cis-trans isomerase are probably identical proteins.

The enzyme peptidyl-prolyl cis-trans isomerase (PPIase) was recently discovered in mammalian tissues and purified from porcine kidney. It catalyses the slow cis-trans isomerization of proline peptide (Xaa-Pro) bonds in oligopeptides and accelerates slow, rate-limiting steps in the folding of several proteins. Here, we report the N-terminal sequence of PPIase together with further chemical and enzymatic properties. The results indicate that this enzyme is probably identical to cyclophilin, a recently discovered mammalian protein which binds tightly to cyclosporin A (CsA). Cyclophilin is thought to be linked to the immunosuppressive action of CsA. The first 38 amino-acid residues of porcine PPIase and of bovine cyclophilin are identical and the two proteins both have a relative molecular mass of about 17,000 (ref. 7). The catalysis of prolyl isomerization in oligopeptides and of protein folding by PPIase are strongly inhibited in the presence of low levels of CsA. The activities of both PPIase and cyclophilin depend on a single sulphydryl group. At present it is unknown whether the inhibition of prolyl isomerase activity is related with the immunosuppressive action of CsA.

Amino Acid Isomerases↗

Topography of surface-exposed amino acids in the membrane protein bacteriorhodopsin determined by proteolysis and micro-sequencing.

The topography of membrane-surface-exposed amino acids in the light-driven proton pump bacteriorhodopsin (BR) was studied. By limited proteolysis of purple membrane with papain or proteinase K, domains were cleaved, separated by SDS-PAGE, and electroblotted onto polyvinylidene difluoride (PVDF) membranes. Fragments transferred were sequenced in a gas-phase sequencer. Papain cleavage sites at Gly-65, Gly-72, and Gly-231, previously only deduced from the apparent molecular weight of the digestion fragments, could be confirmed by N-terminal micro-sequencing. By proteinase K, cleavage occurred at Gln-3, Phe-71, Gly-72, Tyr-131, Tyr-133, and Ser-226, i.e., in regions previously suggested to be surface-exposed. Additionally, proteinase-K cleavage sites at Thr-121 and Leu-127 were identified, which are sites predicted to be in the alpha-helical membrane-spanning segment D. Our results, especially that the amino acids Gly-122 to Tyr-133 are protruding into the aqueous environment, place new constraints on the amino-acid folding of BR across the purple membrane. The validity of theoretical prediction methods of the secondary structure and polypeptide folding for membrane proteins is challenged. The results on BR show that micro-sequencing of peptides separated by SDS-PAGE and blotted to PVDF can be successfully applied to the study of membrane proteins.

Amino Acid Sequence↗

Comparative studies of ribosomal proteins and their genes from Methanococcus vannielii and other organisms.

Using data from a partial protein sequence analysis of ribosomal proteins derived from the archaebacterium Methanococcus vannielii, oligonucleotide probes were synthesized. The probes enabled us to localize several ribosomal protein genes and to determine their nucleotide sequences. The amino acid sequences that were deduced from the genes correspond to proteins L12 and L10 from the rif operon, according to the genome organization in Escherichia coli, and to proteins L23 and L2, which have comparable locations, as in the Escherichia coli S10 operon. Various degrees of similarity were found when the four proteins were compared with the corresponding ribosomal proteins of prokaryotic or eukaryotic organisms. The highest sequence homology was found in counterparts from other archaebacteria, such as Halobacterium marismortui, Halobacterium halobium, or Sulfolobus. In general, the M. vannielii protein sequences were more related to the eukaryotic kingdom than to the Gram-positive or Gram-negative eubacteria. On the other hand, the organization of the ribosomal protein genes clearly follows the operon structure of the Escherichia coli genome and is different from the monocistronic eukaryotic gene arrangements. The protein coding regions were not interrupted by introns. Furthermore, the Shine-Dalgarno type sequences of methanogenic bacteria are homologous with those of eubacteria, and also their terminator regions are similar.

Amino Acid Sequence↗

Coordinated synthesis of leghemoglobin and root protein R18 in yellow lupin.

Uninfected roots of yellow lupin contain an abundant 18 kDa protein (referred to as R18), absent in the mature nodules. Some properties of this polypeptide are apparently similar to those of lupin leghemoglobins. However, the lack of any immuno crossreaction between R18 and leghemoglobin and differences in N-terminal amino acid sequences indicate that these proteins are coded by different genes. The decrease in the content of R18 protein in developing nodule is associated with the increased synthesis of leghemoglobin. This implies coordination of both events.

Amino Acid Sequence↗

Affinity labeling of the GDP/GTP binding site in Thermus thermophilus elongation factor Tu.

Elongation factor Tu from Thermus thermophilus was treated successively with periodate-oxidized GDP or GTP and cyanoborohydride. Covalently modified cyanogen bromide or trypsin fragments of the protein were isolated, and the position of their modification was determined. Lysine residues 52 and 137 were heavily labeled, lysine-137 being considerably more reactive in the GTP form as compared to the GDP form of the protein. These residues are in the proximity of the GDP/GTP binding site. Lys-325 was also labeled, but to a lower extent. The part of the EF-Tu containing residue 52 is missing in crystallized EF-Tu.GDP from Escherichia coli [Jurnak, F. (1985) Science (Washington, D.C.) 230, 32-36]. These results place the part of T. thermophilus EF-Tu corresponding to the missing fragment in E. coli EF-Tu in the vicinity of the nucleotide binding site and allow its role in the interaction with aminoacyl-tRNA and elongation factor Ts to be evaluated. Cross-linking of EF-Tu.GDP by irradiation at 257 nm showed that a sequence of 10 amino acids residues which is found in the Thermus thermophilus elongation factor Tu but not in other homologous bacterial proteins is located in the vicinity of the GDP/GTP binding site.

Affinity Labels↗

Sequence of the gene for ribosomal protein L23 from the archaebacterium Methanococcus vannielii.

The N-terminal sequence of HPLC-purified protein L23 from the Methanococcus vannielii ribosome has been determined by automated liquid-phase Edman degradation. Using the N-terminal amino acid sequence, an oligonucleotide probe complementary to the 5'-end of the gene was synthesized. The 26-mer oligonucleotide, containing two inosines, was used for hybridization with digested M. vannielii chromosomal DNA. The hybridizing band from HpaII-digested genomic DNA was ligated into pUC18 to yield plasmid pMvaZ1 containing the entire gene of protein L23. The nucleotide sequence complemented the partial amino acid sequence, and the gene codes for a protein of 9824 Da. The amino acid sequence of protein L23 form M. vannielii was compared to that of ribosomal proteins from other archaebacteria as well as from eubacteria and eukaryotes. The number of identical amino acids is highest when the M. vannielii protein is compared to the homologous protein from yeast and lowest vs that from tobacco chloroplasts. Interestingly, the secondary structures of the proteins as predicted by computer programs are more conserved than the primary structures.

Amino Acid Sequence↗

Extended N-terminal sequencing of proteins of archaebacterial ribosomes blotted from two-dimensional gels onto glass fiber and poly(vinylidene difluoride) membrane.

Previously uncharacterized proteins from intact ribosomes and ribosomal subunits of the extreme halophile Halobacterium marismortui (Haloarcula marismortui) were isolated and separated by high-resolution two-dimensional electrophoresis (2DE). N-Terminal amino acid sequences of 14 of these acidic large-subunit proteins were obtained by direct blotting of the separated proteins from two-dimensional electrophoresis gels to sequencer-stable supports followed by excision of the protein spots and sequencing. Furthermore, long internal sequences were obtained by in situ enzymatic cleavage of halobacterial proteins in gel pieces obtained from two-dimensional gels followed by electrophoretic separation of the fragments, blotting, and sequencing. Precautions are outlined for avoidance of N-terminal blockage of proteins, and the preparation and selection of suitable supports for obtaining extended N-terminal sequences are described. The results suggest that when prior fractionation is carried out to enrich for cell organelles, subcellular components of cells, or cell membranes, it is routinely possible to obtain numerous N-terminal sequences from one or a few 2DE gels of such fractions. Our results also indicate that, with appropriate precautions, proteins are routinely obtainable from 2DE gels in a form suitable for both N-terminal and internal sequence determination and show no detectable evidence for N-terminal blockage or destruction or modification of labile amino acid residues.

Acetates↗

Complete amino acid sequence of protein B.

The complete amino acid sequence of protein B (= CAMP factor) of Streptococcus agalactiae has been determined. The sequence data were obtained mainly by manual sequencing of peptides derived from digestion with lysyl-peptidase, clostripain and Staphylococcus aureus protease and by solid phase sequencing of cyanogen bromide fragments. The protein contains 226 amino acids and has an Mr of 25,263. The sequence was compared with sequences of other Fc-binding proteins and partial sequence homology was found between protein B and the Fc-binding region of protein A.

Amino Acid Sequence↗