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Biomedical subjects

C M Litwin

Publications and source records attributed to C M Litwin.

At least 37 records · Page 2Linked to original sources

Immunologic response to Bartonella henselae as determined by enzyme immunoassay and Western blot analysis.

Bartonella henselae is now regarded as the etiologic agent of cat-scratch disease and a cause of bacillary angiomatosis. We examined the human immune response to Bartonella henselae infection using a newly developed enzyme immunoassay (EIA) and a Western blot procedure using outer-membrane proteins. The EIA showed 98.6% and 91.4% agreement with an indirect fluorescence method (IFA) for detection of IgM and IgG antibodies, respectively. By using Western blot analysis, reactivity to an 8-kd band showed significant correlation with positive results by the IgM IFA and EIA. In contrast, reactivity to 209-, 208.5-, 208-, 116-, and 80-kd bands was identified only in positive IgG IFA serum samples. The EIA and Western blot should be useful tests in determining the antibody response to B. henselae infection and may also be important in determining the critical epitopes in the host-parasite interaction of this organism.

Adolescent↗

Immunoglobulin A antibodies to Helicobacter pylori.

Serological testing for immunoglobulin G (IgG) antibodies to Helicobacter pylori has proven useful in supporting the diagnosis of infection with this organism, but the clinical value of IgA antibodies in H. pylori-related gastritis remains controversial. The purpose of our study was to determine the frequency of IgA-positive IgG-negative patients with symptoms of gastrointestinal (GI) disorders, thus assessing the clinical utility of IgA testing for H. pylori-related gastritis. It was found previously that the frequency of infected individuals in this category (IgA positive and IgG negative) is about 2%, but a large number of IgG-negative patients with GI disorders suggestive of H. pylori infection have not been investigated until now.

Antibodies, Bacterial↗

Anti-glomerular basement membrane disease: role of enzyme-linked immunosorbent assays in diagnosis.

We compared two enzyme-linked immunosorbent assay (ELISA) tests with indirect immunofluorescence (IFA) for the measurement of anti-glomerular basement membrane (GBM) antibodies to study their sensitivity and specificity. The first ELISA test kit compared well to IFA (96.4% agreement, 93.3% sensitivity, 97.0% specificity). The second ELISA kit was much less sensitive (87.8% agreement, 63.3% sensitivity, 92.2% specificity). ELISA tests for the measurement of anti-GBM antibodies allow for quantitation and may have greater sensitivity than IFA. Sensitivity, however, may depend on the commercial test used.

Adolescent↗

Screening for antinuclear antibodies by enzyme immunoassay.

Indirect fluorescent antibody (IFA) ia most widely used method in clin clinical laboratories to screen for autoantibodies against a wide variety of nuclear antigens. Recently, a number of antinuclear antibody (ANA) enzyme immunoassay (EIA) screens have become commercially available and claim to be an alternative method to screen for ANAs. Given the subjectivity of technical interpretation of IFA and the high number of ANA negative samples, a suitable EIA method for ANA screening would be beneficial to clinical laboratories with large samples volumes. Five ANA EIA screens were compared (Elias, Helix, Sanofi, TheraTest and Zeus) to IFA using a human epithelial cell line (HEp-2). Sera from 601 patients submitted to our reference laboratory for autoimmune testing, and from 202 normal healthy blood donors, were included in this study. Samples with discordant results between IFA and EIA were further analyzed using single antigen EIAs for SSA, SSB, Sm, RNP, Scl-70, histones, dsDNA, and ssDNA. Analyses were based on clinically significant IFA titers of > or equal to 1:160 as positive and <1:40 as negative. When compared to IFA, agreement, sensitivity and specificity for each ANA EIA screen were as follows: Elias: 87.0%, 69.5% and 97.9%; Helix: 94.6%, 90.2%, and 97.3%; Sanofi: 95.0%, 93.7%, and 95.9%; TheraTest: 95.3%, 97.7%, and 93.5%; Zeus: 87.1%, 96.2%, and 81.4%, respectively. In conclusion, screening for ANAs by EIA using several commercial assays was both sensitive and specific when compared to IFA. Moreover, the EIA is objective and much less labor intensive when screening a large number of clinical specimens. None of the EIAs were 100% sensitive and, thus, may fail to detect a few of the nonspecific ANAs that demonstrate atypical as well as classical IFA patterns. The advantages of employing these nonsubjective assays to screen out the vast majority of ANA negative sera is clear. The authors still recommend confirming titers and patterns of sera with positive EIA screens using classical IFA methods employing HEp-2 cells.

Antibodies, Antinuclear↗

Polymerase chain reaction detection of Lyme disease: correlation with clinical manifestations and serologic responses.

The authors have developed a simple, nested polymerase chain reaction (PCR) assay for amplification of an outer surface protein A (OspA) gene fragment of Borrelia burgdorferi using rapid temperature cycling and ethidium bromide detection on agarose gels, and applied it to the diagnosis of Lyme disease in humans. With denaturing and annealing temperature spikes instead of holds, cycle times were less than 20 minutes for a 30-cycle amplification. Using this rapid cycle PCR technique, as few as 5 spirochetes per mL of phosphate buffered saline were detected. In addition, B burgdorferi DNA was detected from spirochetes that had been spiked into one of several types of human body fluids including serum, synovial fluid, and cerebrospinal fluid (CSF). A number of clinical samples, which had been tested for Lyme immunoglobulin M (IgM) and immunoglobulin G (IgG) antibody were also examined. In 29 serologic positive samples (14 IgG and IgM positive, 9 IgM alone and 6 IgG alone), B burgdorferi DNA was not detected. In contrast, nine serum samples and one synovial fluid from patients with definite clinical features of Lyme disease were found to be negative by EIA and Western blot analysis for IgG and IgM antibody, but contained B burgdorferi DNA, as detected by PCR. Polymerase chain reaction analysis of serum and synovial fluid may be of significant diagnostic value in Lyme disease, especially in the absence of a serologic response in early, partially treated and seronegative chronic disease. This is the first study to report an association between PCR positivity and the absence of a serologic response to Lyme borreliosis.

Base Sequence↗

Role of catechol siderophore synthesis in Vibrio vulnificus virulence.

We isolated a Vibrio vulnificus TnphoA mutant that was unable to produce catechol siderophores or to acquire iron from transferrin. This mutant showed reduced virulence in an infant mouse model. The TnphoA insertion was in an open reading frame designated venB. The venB gene cloned on a plasmid restored catechol production to the mutant. The deduced amino acid sequence of venB is 41% identical to the enzyme isochorismatase of Escherichia coli (EntB), an enzyme involved in the biosynthesis of the catechol siderophore enterobactin.

Amino Acid Sequence↗

Analysis of the complexity of gene regulation by fur in Vibrio cholerae.

Iron concentration influences the expression of a number of genes involved in iron uptake and virulence in bacteria. In Escherichia coli, coordinate regulation of these genes by iron depends on the product of the fur gene, which acts as an iron-responsive, DNA-binding repressor protein. Several genes in Vibrio cholerae are also repressed by iron; and a fur gene, homologous to E. coli fur, has been previously cloned from this organism. The present study was undertaken to define the roles of Fur and iron in regulating gene expression in V. cholerae. V. cholerae strains with a mutation in fur by virtue of suicide plasmid integration into this gene showed derepressed expression of two previously characterized, iron-regulated genes, irgA and viuA, in high concentrations of iron; even in the fur mutants, however, residual two- to threefold regulation by iron persisted. The fur mutant strains constructed by suicide plasmid integration required antibiotic selection to maintain the mutation. To analyze further the effect of Fur and iron on gene regulation in V. cholerae without the need for antibiotic selection, we used in vivo marker exchange to construct a nonrevertible V. cholerae fur mutant. This V. cholerae fur mutant grew significantly less well in Luria-Bertani medium than the wild-type parent but grew slightly better than the wild type under iron-restricted conditions. The V. cholerae fur mutant was unable to utilize a number of carbon sources including glycerol, acetate, succinate, lactate, and fumarate, that supported growth of the wild-type strain on minimal media. We utilized two-dimensional gel electrophoresis of whole-cell protein extracts from the fur mutant and wild-type strains following growth in conditions of either low or high concentrations of iron to identify proteins regulated by iron and/or Fur. Twenty-two proteins were negatively regulated by iron in the wild-type strain but constitutively expressed in the fur mutant, consistent with the model of Fur as an iron-dependent repressor. However, many other proteins were regulated in a different manner by iron and/or Fur. Seventeen proteins were negatively regulated by iron but independent of Fur, suggesting the presence of an additional iron-dependent repressor(s). Six proteins were strongly iron regulated in the fur mutant but hardly expressed at all in the wild-type strain regardless of the iron concentration, suggesting an interaction between Fur and another iron regulatory mechanism. There were 11 proteins that were induced rather than repressed by iron, in four different regulatory classes. Gene regulation in V. cholerae by Fur and iron is much more complex than previously thought and is reminiscent of the Lrp regulon in E.coli.

Bacterial Outer Membrane Proteins↗

Vibrio cholerae fur mutations associated with loss of repressor activity: implications for the structural-functional relationships of fur.

We used the Vibrio cholerae Fur protein as a model of iron-sensitive repressor proteins in gram-negative bacteria. Utilizing manganese mutagenesis, we isolated twelve independent mutations in V. cholerae fur that resulted in partial or complete loss of Fur repressor function. The mutant fur genes were recovered by PCR and sequenced; 11 of the 12 contained point mutations (two of which were identical), and one contained a 7-bp insertion that resulted in premature truncation of Fur. All of the mutants, except that containing the prematurely truncated Fur, produced protein by Western blot (immunoblot) analysis, although several had substantially smaller amounts of Fur and two made an immunoreactive protein that migrated more rapidly on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Nine of the 11 point mutations altered amino acids that are identical in all of the fur genes sequenced so far, suggesting that these amino acids may play important structural or functional roles in Fur activity. Eight of the point mutations occurred in the amino-terminal half of Fur, which is thought to mediate DNA binding; most of these mutations occurred in conserved amino acids that have been previously suggested to play a role in the interaction between adjacent alpha-helices of the protein. Three of the point mutations occurred in the carboxy-terminal half of Fur, which is thought to bind iron. One mutation at histidine-90 was associated with complete loss of Fur function; this amino acid is within a motif previously suggested as being involved in iron binding by Fur. The fur allele mutant at histidine-90 interfered with iron regulation by wild-type fur in the same cell when the mutant allele was present at higher copy number; wild-type fur was dominant over all other fur mutant alleles studied. These results are analyzed with respect to previous models of the structure and function of Fur as an iron-sensitive repressor.

Amino Acid Sequence↗

Role of iron in regulation of virulence genes.

The abilities of bacterial pathogens to adapt to the environment within the host are essential to their virulence. Microorganisms have adapted to the iron limitation present in mammalian hosts by evolving diverse mechanisms for the assimilation of iron sufficient for growth. In addition, many bacterial pathogens have used the low concentration of iron present in the host as an important signal to enhance the expression of a wide variety of bacterial toxins and other virulence determinants. The molecular basis of coordinate regulation by iron has been most thoroughly studied in Escherichia coli. In this organism, coordinate regulation of gene expression by iron depends on the regulatory gene, fur. Regulation of gene expression by iron in a number of pathogenic organisms is coordinated by proteins homologous to the Fur protein of E. coli. Additional regulatory proteins may be superimposed on the Fur repressor to provide the fine-tuning necessary for the precise regulation of individual virulence genes in response to iron and other environmental signals. Studies of the mechanisms of regulation of iron acquisition systems and virulence determinants by iron should lead to a better understanding of the adaptive response of bacteria to the low-iron environment of the host and its importance in virulence.

Bacteria↗

Cloning and genetic analysis of the Vibrio vulnificus fur gene and construction of a fur mutant by in vivo marker exchange.

Vibrio vulnificus infections have been associated with iron overload and preexisting liver disease. Iron may play a major role in the pathogenesis of V. vulnificus infections. Many virulence genes, as well as genes involved in the transport of iron by bacteria, are regulated by iron, with increased expression under low-iron conditions. In Escherichia coli and Vibrio cholerae, transcriptional regulation by iron depends on the fur gene. We utilized Southern hybridization under low- and high-stringency conditions with both E. coli and V. cholerae fur gene probes to demonstrate that there are fur-homologous sequences in the DNAs of V. vulnificus, Vibrio fischeri, and Aeromonas sp. but not in the DNAs of the other bacterial species tested. We developed a restriction map and cloned the fur-homologous sequence from V. vulnificus. The hybridizing clone of V. vulnificus chromosomal DNA complemented a V. cholerae fur mutant. DNA sequence analysis confirmed the presence of a 149-amino-acid open reading frame that was 77% homologous to E. coli Fur and 93% homologous to V. cholerae Fur. Primer extension localized a single promoter for the V. vulnificus fur gene. Northern (RNA) blot analysis and beta-galactosidase assays of an operon fusion to lacZ suggested that there was not significant regulation of transcription of V. vulnificus fur by iron or the E. coli Fur protein. We used marker exchange to construct a V. vulnificus fur deletion mutant and confirmed its phenotype by observing overexpression of iron-regulated outer membrane proteins on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The fur deletion mutant of V. vulnificus will be helpful in future studies of the role of iron in V. vulnificus pathogenesis.

Amino Acid Sequence↗

p56lyn catalyzes a reversible autophosphorylation reaction and a nucleoside diphosphate kinase reaction.

The reversible autophosphorylation of the pp60c-src family tyrosine kinase, p56lyn has been characterized by a simple procedure that involves the examination of the enzyme catalyzed radioisotope exchange between ATP and ADP. The equilibrium constant of the reaction was determined to be 3.31 and corresponded to a standard free energy of hydrolysis of the phosphotyrosine bond in p56lyn of -8.08 kcal/mol. GDP was capable of substituting for ADP as phosphate acceptor so that p56lyn displayed a nucleoside diphosphate kinase activity.

ATP Synthetase Complexes↗

Purification and characterization of a novel proline-directed protein kinase from bovine brain.

A novel protein kinase which phosphorylates a synthetic peptide substrate (RRPDAHRTPNRAF) has been purified approximately 200,000-fold from bovine brain. This peptide contains the consensus sequence for phosphorylation by the p34cdc2 kinase. The purification procedure took advantage of the phenomenon that this novel brain kinase, in partially purified extracts, chromatographed on a gel filtration column as a high molecular weight complex which dissociated in buffer containing 1 M NaCl. The purified native enzyme was estimated to be approximately 63,000, and displayed two bands of M(r) = 33,000 and 25,000 on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. On Western immunoblot, the M(r) = 33,000 peptide reacted strongly with antibodies specific for a conserved amino-terminal sequence, weakly with antibodies to the conserved PSTAIRE sequence, and not at all with antibodies to the carboxyl terminus, of HeLa cell p34cdc2. The brain kinase and p34cdc2 were similar in displaying good activity toward the parent peptide substrate, but no activity toward peptide analogues in which the -T-P- motif was substituted with either -T-G- or -T-A-. Both kinases showed marked preference in phosphorylating a peptide derived from H1 histone (KTPKKAKKPKTPKKAKKL), and both kinases could be phosphorylated by the src-family tyrosine kinase, p56lyn, purified from bovine spleen. However, the brain kinase did not co-purify with a subunit having a molecular weight corresponding to known cyclins, nor did it undergo specific interaction with p13suc1 beads, suggesting that this enzyme is distinct from p34cdc2.

Amino Acid Sequence↗

Cloning, sequencing, and transcriptional regulation of the Vibrio cholerae fur gene.

Many genes involved in the transport of iron by bacteria as well as in pathogenesis are regulated by the environmental concentration of iron, with increased expression under low-iron conditions. In Escherichia coli, transcriptional regulation by iron depends on the fur gene. A virulence gene in Vibrio cholerae (irgA) is also transcriptionally regulated by iron, and the promoter of irgA contains a dyad repeat homologous to Fur binding sites in E. coli. Southern hybridization of V. cholerae chromosomal DNA, using an internal fragment of E. coli fur as a probe, showed a single hybridizing sequence under conditions of low stringency. We derived a restriction map in the vicinity of this hybridizing sequence; overlapping PstI and HindIII fragments were identified at the center of this map. The cloned PstI fragment failed to complement an E. coli fur mutant; sequence analysis revealed an open reading frame that began just downstream of the PstI site, suggesting that the clone was not functional because it lacked its promoter. The overlapping HindIII fragment contained the intact V. cholerae fur gene with its promoter and complemented an E. coli fur mutant. DNA sequencing of the HindIII fragment demonstrated a single open reading frame of 150 amino acids that was 76% homologous to E. coli Fur. Primer extension analysis localized two promoters for the V. cholerae fur gene; no significant homology to an E. coli Fur binding site was identified for either promoter. Northern blot analysis showed that the two fur transcripts were not strongly regulated by iron. These studies identify a gene in V. cholerae homologous in both function and sequence to the fur gene of E. coli, and we have designated this gene the fur gene of V. cholerae.

Amino Acid Sequence↗

Effects of captopril on contractility after myocardial infarction: experimental observations.

After large myocardial infarction, compromised left ventricular (LV) function and changes in the peripheral circulation result in the syndrome of chronic congestive heart failure. Although treatment with angiotensin-converting enzyme inhibitors improve cardiovascular function, it is difficult to determine whether this benefit is due to changes in organ versus muscle function. The rat model of heart failure, created by ligating the left coronary artery, results in pathophysiology that is similar to that seen in patients, i.e., increased LV end-diastolic pressure and volume, hypertrophy of the noninfarcted myocardium, prolongation of the time constant of LV relaxation, decreased venous compliance, and increased total blood volume. In noninfarcted papillary muscles, isolated from rats with heart failure, maximal developed tension and peak rate of tension rise (+dT/dt) are decreased, time to peak tension is prolonged, and myocardial stiffness is increased. Morphologic changes include an increase in papillary muscle myocyte cross-sectional area and an increase in myocardial hydroxyproline content. Captopril (2 g/liter drinking water) alters LV loading by decreasing arterial pressure, increasing venous compliance, and decreasing blood volume. This results in a decrease in LV end-diastolic pressure and volume. In the noninfarcted myocardium, time to peak tension is shortened, whereas developed tension, +dT/dt, and muscle stiffness remain abnormal. Captopril decreases myocyte cross-sectional area, but collagen content remains elevated. Thus, in the rat infarct model of heart failure, treatment with captopril alters LV remodeling and hypertrophy but produces only modest improvement in muscle function.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Structural basis of specific and efficient phosphorylation of peptides derived from p34cdc2 by a pp60src-related protein tyrosine kinase.

Cys-cdc2(8-20), a synthetic peptide derived from p34cdc2, was previously reported to be a specific and efficient substrate of a pp60c-src-related tyrosine kinase isolated from bovine spleen (the spleen tyrosine kinase) (Litwin, C.M.E., Cheng, H.-C., and Wang, J.H. (1991) J. Biol. Chem. 266, 2557-2566). The longer peptide, cdc2(1-24), was found to be phosphorylated by the kinase with similar efficiency, and Tyr15 was the only amino acid residue phosphorylated. This indicated that the amino acid sequence of cdc2(8-20) peptide, EKI-GEGTYGVVYK, contained the structural features important for protein tyrosine kinase substrate activity. A stepwise procedure using synthetic peptides was employed to investigate such structural features. First, a computer search of protein sequences homologous to cdc2(8-20) uncovered five protein kinases containing homologous sequence with tyrosine at a position corresponding to Tyr15 of p34cdc2. Second, a peptide derived from ribosomal S6 protein kinase (rsk(436-456] was synthesized. The rsk(436-456) peptide contained a segment, ETIGVGSYSVCKR, which is highly homologous to that of cdc2(8-20). It was found to be a very poor substrate of the spleen tyrosine kinase. Third, peptide analogs of cdc2(6-20) with single substitutions of amino acid residues Lys9, Glu12, Thr14, Gly16, Val18, and Tyr19 by amino acid residues at corresponding positions of rsk were synthesized and tested as spleen tyrosine kinase substrates. Only Glu12 and Thr14 substituted peptide analogs showed decreased substrate activities. (The substrate activity of a peptide is the ability of the peptide to serve as the substrate of the spleen tyrosine kinase. It was determined of the spleen tyrosine kinase. It was determined either by the kinetic parameters (Km and Vmax) of phosphorylation of the peptide or by the initial phosphorylation rate of the peptide by the spleen tyrosine kinase.) An analog with double substitution at Glu12 An analog with double substitution at Glu12 and Thr14 was found to be almost as poor a substrate as the rsk peptide. In addition, peptide analogs with Tyr15 substituted by Phe or D-Tyr had poor substrate activities as well as weak inhibitory activities. Thus, Glu12, Thr14, and Tyr15 residues of p34cdc2 contained structural components essential for the efficient phosphorylation of the peptides derived from p34cdc2 by the pp60c-src-related spleen tyrosine kinase.

Amino Acid Sequence↗

Phosphorylation of caldesmon by cdc2 kinase.

A recent report that mitosis-specific phosphorylation causes the nonmuscle caldesmon to dissociate from microfilaments (Yamashiro, S., Yamakita, Y., Ishikawa, R., and Matsumura, F. (1990) Nature 344, 675-678) suggests that this process may contribute to the major structural reorganization of the eukaryotic cell at mitosis. In this study we have demonstrated that smooth muscle caldesmon is phosphorylated in vitro by cdc2 kinase from mitotic phase HeLa cells to 1.2 mol of phosphate/mol of caldesmon. Tryptic maps showed three major phosphorylated spots and approximately equal amounts of phosphorylated Ser and Thr were identified. F-actin or calmodulin in the presence of Ca2+ blocks the phosphorylation of caldesmon. Phosphorylation of caldesmon greatly reduced its binding to F-actin. The phosphorylation sites were located in a 10,000-Da CnBr fragment at the COOH-terminal end of the caldesmon molecule known to house the binding sites for actin and calmodulin (Bartegi A., Fattoum, A., Derancourt, J., and Kassab, R. (1990) J. Biol. Chem. 265, 15231-15238). Our finding supports the model that phosphorylation of caldesmon by cdc2 kinase at mitosis may contribute to the disassembly of the microfilament bundles during prophase.

Actins↗

Purification and characterization of a pp60c-src-related tyrosine kinase that effectively phosphorylates a synthetic peptide derived from p34cdc2.

A protein tyrosine kinase has been purified from the particulate fraction of bovine spleen to a specific activity of 0.217 mumol/min/mg at 100 microM ATP and 3 mM [Val5] angiotensin II. Both the angiotensin phosphorylation activity and immunoreactivity towards an antibody preparation raised against a synthetic peptide containing the autophosphorylation site of pp60c-src, Cys-src(403-421), were monitored during the purification. The purified sample displayed three closely spaced protein bands with molecular weights of 50-55 kDa on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. All bands could be phosphorylated exclusively on tyrosine residues under autophosphorylation conditions. All reacted on immunoblots with an antibody raised against a synthetic peptide corresponding to the consensus autophosphorylation site of members of the pp60c-src family of tyrosine kinases. Tryptic phosphopeptide maps of the three proteins were essentially indistinguishable. The results suggest that the purified enzyme preparation contained mainly three closely related pp60c-src-family protein tyrosine kinases or a pp60src-family protein tyrosine kinase modified posttranslationally to give three closely spaced protein bands on sodium dodecyl sulfate gel. Neither of these proteins appears to be pp60c-src or p56lck. The spleen protein tyrosine kinase was found to phosphorylate a p34cdc2 kinase peptide, Cys-cdc2(8-20), which contained the regulatory tyrosine residue Tyr-15 about 20 times better than [Val5]angiotensin II or Cys-src(403-421) peptide at a peptide substrate concentration of 1 mM. In contrast, epidermal growth factor receptor kinase partially purified from A431 cells did not show preference for Cys-cdc2(8-20) as its substrate. Although Cys-cdc2(8-20) contained two tyrosine residues, only the tyrosine corresponding to Tyr-15 in p34cdc2 was phosphorylated by the spleen tyrosine kinase. The observation suggests that the primary structure surrounding Tyr-15 of p34cdc2 contains substrate structural determinants specific for the spleen tyrosine kinase.

Amino Acid Sequence↗