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E A Wagar

Publications and source records attributed to E A Wagar.

9 recordsLinked to original sources

Analysis of genomic DNA from Chlamydia trachomatis for Dam and Dcm methylation.

Chlamydia trachomatis is a Gram-negative eubacterium with a dimorphic developmental cycle and obligate intracellular growth in the eucaryotic host. The Dam transmethylase of Escherichia coli methylates at the N6 position of adenine in the sequence 5'-GATC-3' and the Dcm transmethylase adds methyl groups to the C5 position of the internal cytosines in the sequences 5'-CCWGG-3'. In contrast to E. coli, C. trachomatis DNA appears to have unmethylated Dam sites and only low level Dcm methylation.

Adenine

The gene for the S7 ribosomal protein of Chlamydia trachomatis: characterization within the chlamydial str operon.

The prokaryotic ribosomal operon, str, contains open reading frames for the two elongation factors, elongation factor G (EF-G) and elongation factor Tu (EF-Tu), and ribosomal proteins S7 and S12. The DNA sequence and predicted amino acid sequence for S7 from Chlamydia trachomatis are presented and compared with homologues from other prokaryotes. Also, the relationship of the S7 gene to the open reading frames for ribosomal protein S12 and EF-G is described. Significant amino acid homology is also noted when the amino-terminal sequence of chlamydial EF-G is compared with the cytoplasmic tetracycline resistance factors, tetM and tetO, from streptococci and Campylobacter jejuni. Related findings and possible resistance mechanisms for the newly recognized tetracycline-resistant clinical isolates of C. trachomatis are discussed.

Amino Acid Sequence

Differential human serologic response to two 60,000 molecular weight Chlamydia trachomatis antigens.

Chlamydia trachomatis causes sexually transmitted diseases and is associated with serious long-term sequelae such as tubal infertility and ectopic pregnancy. There have been suggestions that chlamydial antigens of approximately 57,000-60,000 Mr may be involved in the immunopathology. Two important chlamydial antigens of 57,000-60,000 Mr are a Triton X-100-soluble antigen, which induces hypersensitivity in ocular models, and a sarcosyl-insoluble cysteine-rich structural protein, omp2. In this study, a 57,000 Mr Triton X-100-soluble protein was characterized as the chlamydial homolog of groEL, a heat shock protein. Using protein fractions, antibody responses of pelvic inflammatory disease (PID) and ectopic pregnancy patients to chlamydial groEL and omp2 were differentiated. Nearly all patients in both groups were reactive to omp2. Of those with titers greater than or equal to 1:512, 31% of PID sera and 81% of ectopic pregnancy sera were positive for chlamydial groEL (P = .004). This selectivity suggests that women with PID who develop chronic sequelae are those with antibody to groEL.

Antibodies, Bacterial

High-resolution mapping of serovar-specific and common antigenic determinants of the major outer membrane protein of Chlamydia trachomatis.

The principal surface protein antigen of Chlamydia trachomatis is the major outer membrane protein (MOMP). The MOMP is antigenically complex. Among the 15 serovars of C. trachomatis, mAbs define serovar-, subspecies-, and species-specific determinants on MOMP. The molecular basis of the antigenic diversity of these proteins is reflected in amino acid variable sequence domains. We have mapped the dominant topographic antigenic determinants of MOMP that are defined by mAbs. Using recombinant DNA approaches we have identified the linear distribution of two antigenic domains. One domain contains a serovar-specific determinant and the other contains subspecies- and species-specific determinants. These antigenic domains correspond to two amino acid sequence variable domains. Synthetic peptides were immunogenic and these resolved the serovar-specific determinant within a 14-amino acid peptide. The subspecies- and species-specific determinants were overlapping within a 16-amino acid peptide.

Amino Acid Sequence

Developmental-form-specific DNA-binding proteins in Chlamydia spp.

We identified DNA-binding proteins specific to the elementary body (EB) developmental form of Chlamydia spp. Chlamydial proteins from whole lysates were separated by polyacrylamide gel electrophoresis, transferred to nitrocellulose, and probed with nick-translated chlamydial DNA. By this method, C. trachomatis serovar L2 EBs had three unique protein bands of 58,000, 25,700, and 17,000 molecular weight not seen in the reticulate bodies. The 17,000-molecular-weight protein and the 25,700-molecular-weight protein were identified in an acid-soluble protein fraction and were resistant to high-salt elution, similar to other procaryotic nucleoproteins. The 17,000-molecular-weight protein was also detected in preparations with isolated chromosomes from EBs. Preliminary characterization indicated that the protein-DNA interaction was principally charge related.

Bacterial Proteins

Developmental regulation of tandem promoters for the major outer membrane protein gene of Chlamydia trachomatis.

Chlamydia trachomatis has a biphasic developmental cycle which is characterized by qualitative and quantitative changes in protein expression. The molecular mechanisms that mediate these changes are unknown. Evidence for transcriptional regulation of the chlamydial major outer membrane protein gene (omp1) was found by Northern hybridization of RNA isolated sequentially during the chlamydial developmental cycle. Early in the growth cycle a single transcript was detected, which was followed hours later in the cycle by an additional transcript. Mapping of the initiating nucleotide for each transcript suggested that this gene is regulated by differential transcription from tandem promoters.

Bacterial Outer Membrane Proteins

Diversity of Chlamydia trachomatis major outer membrane protein genes.

Genomic DNA libraries were constructed for Chlamydia trachomatis serovars B and C by using BamHI fragments, and recombinants that contained the major outer membrane protein (omp1) gene for each serovar were identified and sequenced. Comparisons between these gene sequences and the gene from serovar L2 demonstrated fewer base pair differences between serovars L2 and B than between L2 and C; this finding is consistent with the serologic and antigenic relationships among these serovars. The translated amino acid sequence for the major outer membrane proteins (MOMPs) contained the same number of amino acids for serovars L2 and B, whereas the serovar C MOMP contained three additional amino acids. The antigenic diversity of the chlamydial MOMP was reflected in four sequence-variable domains, and two of these domains were candidates for the putative type-specific antigenic determinant. The molecular basis of omp1 gene diversity among C. trachomatis serovars was observed to be clustered nucleotide substitutions for closely related serovars and insertions or deletions for distantly related serovars.

Amino Acid Sequence

Antibody to the retrovirus associated with the acquired immunodeficiency syndrome (AIDS). Presence in presumably healthy San Franciscans who died unexpectedly.

We performed autopsies and serologic tests in 189 subjects (152 men and 37 women) between 20 and 50 years of age with no history of immunosuppression who died unexpectedly and whose bodies were referred to the San Francisco coroner's office. Forty-eight of the 88 single men for whom addresses were available lived in areas of the city with a high incidence of the acquired immunodeficiency syndrome (AIDS). In addition, 36 of the subjects (30 men) were intravenous drug abusers. Antibody to the retrovirus associated with AIDS was present in 23 (18%) of the 121 subjects whose sera were tested. However, neither pathologic nor laboratory manifestations of AIDS were present in any of the 189 subjects who underwent autopsy. These results suggest that antibody to the retrovirus is common but subclinical manifestations of AIDS are uncommon in San Francisco, a city where the incidence of clinical AIDS is high.

Acquired Immunodeficiency Syndrome