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E C Gotschlich

Publications and source records attributed to E C Gotschlich.

At least 55 records · Page 3Linked to original sources

The DNA sequence of the structural gene of gonococcal protein III and the flanking region containing a repetitive sequence. Homology of protein III with enterobacterial OmpA proteins.

The insert of a lambda gt11 clone expressing gonococcal protein III was sequenced. The deduced amino acid sequence showed a coding frame of 236 amino acids with a typical 22-amino-acid signal peptide, followed by the known NH2-terminal sequence of PIII. The mature protein has a molecular weight of 23,298. It was found that PIII had extensive and very striking homology to the carboxy-terminal portion of enterobacterial OmpA proteins. The homology encompasses the OmpA domain that is believed to be located in the periplasmic space. If the disposition of PIII across the OM is analogous, then the surface-exposed domain consists of less than 40 amino acids. These include a potential 15-amino-acid disulfide loop, a feature not found in OmpA proteins. Hybridization studies with the sequenced insert indicated that it contained a repetitive sequence that occurred at least 20 times in the genome. By additional hybridization studies the area containing the repetitive sequence was narrowed to a region of 43 bp. This region contained an exact copy of the consensus sequence of a 26-bp repetitive sequence recently described. An analogous sequence recurs in an inverted orientation 53 bp downstream.

Amino Acid Sequence↗

Gonococcal protein III. Purification and chemical characterization of the protein, and the DNA sequence of the structural gene.

We have purified protein III (PIII) from several strains of gonococcus by extractions with Zwittergent 3,14 followed by cation exchange chromatography and gel filtration. The pI of 8.6 determined by isoelectric focusing was in keeping with the high content of basic amino acids found. PIII from two strains had identical N-terminal sequence. In contrast to PIII in vivo, purified PIII was highly susceptible to proteolysis. Rabbit antibodies raised with purified antigen reacted with PIII of all strains tested as well as meningococcal protein 4. Furthermore, intact gonococci or meningococci could absorb 80% of antibodies raised by immunization with the purified PIII. The structural gene of PIII was cloned and the DNA sequenced. The predicted primary structure is strongly homologous to the OmpA proteins of Enterobacteria.

Amino Acid Sequence↗

Porin protein of Neisseria gonorrhoeae: cloning and gene structure.

The outer membrane porin molecule of Neisseria gonorrhoeae is known as protein I (PI). Among different strains of gonococci there is variability of PI, and two main classes, PIA and PIB, have been recognized. A lambda gt11 bank of gonococcal DNA was screened using monoclonal antibodies directed to a PIB-type porin molecule of N. gonorrhoeae, and three immunoreactive clones were isolated. DNA sequence analysis indicated that each contained only portions of the PI structural gene, but that together they contained the complete gene, and its structure was determined. The DNA sequence predicts a protein of 348 amino acids with a typical 19 amino acid signal peptide. The PI protein resembles Escherichia coli porins in size, lack of long hydrophobic sequences, and absence of cysteine residues. Sequence homologies between PI and the E. coli porins were found, particularly in the 100 N-terminal and the 110 C-terminal amino acids. In addition to the coding sequence of PI, the complementary strand contains a large open reading frame. At the 3' end of the PI gene, immediately following an inverted repeat (probably the transcription terminator), the clone contains an unusual sequence consisting of 31 perfect repeats of the heptamer CTGTTTT. Hybridization analysis suggests that there is a single structural gene for PI and that it is homologous to the gene found in a PIA-bearing strain of gonococcus.

Amino Acid Sequence↗

Effects of recA mutations on pilus antigenic variation and phase transitions in Neisseria gonorrhoeae.

Intragenic recombination between the single complete pilin gene (expression locus) and multiple, distinct, partial pilin gene copies (silent, storage loci) is thought to account for the generation of pilus antigenic diversity and piliation phase (on-off) changes exhibited by Neisseria gonorrhoeae. The mechanisms operating in the genomic rearrangements associated with these forms of pilus variation were investigated through the study of isogenic strains of gonococci bearing either wild-type or altered recA alleles. Examination of the rates of pilus phase variation and the genetic basis for changes in piliation status displayed by these strains show that recA mediated homologous recombination is required for these high frequency events and confirm that the nonpiliated state results from mutations in the expressed pilin gene. In a strain that is deficient in recA mediated homologous recombination, pilus phase variation occurs at a 100-1000-fold reduced rate and results predominantly from one class of spontaneous frameshift mutations within the pilin structural gene.

Alleles↗

Chemical characterization of binding properties of opacity-associated protein II from Neisseria gonorrhoeae.

Binding of an opacity-associated protein II (PIIop) from Neisseria gonorrhoeae to eucaryotic macromolecules was studied. HeLa cell extracts were subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis and transferred to nitrocellulose, and purified PIIop bound to approximately 50 distinct molecular species. The binding of PIIop to HeLa cell components was stable in high salt and nonionic detergent and was not inhibited by a variety of monosaccharides and polyionic substances. PIIop binding behavior was compared with that of two model carbohydrate-binding proteins, wheat germ agglutinin (WGA) and concanavalin A (ConA). Model glycoproteins (ovomucoid, fetuin, mucin, ovalbumin) inhibited binding by PIIop, WGA, and ConA to various degrees. HeLa cell glycopeptides, generated by pronase digestion of chloroform-methanol-extracted cells, were tested for their ability to inhibit binding by PIIop to Western blots of HeLa cell macromolecules. HeLa cell extracts inhibited PIIop binding before pronase treatment, but inhibitory activity was lost as a result of pronase digestion. Direct binding to defined glycosylated and nonglycosylated proteins revealed that ConA and WGA bound only glycoproteins, whereas PIIop bound to proteins lacking carbohydrate as well. PIIop binding to human and bovine serum albumins was of high affinity and required partial unfolding of albumin; native albumin was not bound by PIIop; however, both the denatured, reduced form of albumin and the compact, nonreduced form of carboxymethylated albumin were bound strongly by PIIop. Albumin-PIIop interaction did not involve covalent bond formation through sulfhydryl groups. The predominant binding interactions of PIIop found in this study were with protein rather than carbohydrate, and the chemical nature of the interactions is more complex than involvement of purely ionic or hydrophobic forces.

Bacterial Adhesion↗

Cloning of the structural genes of three H8 antigens and of protein III of Neisseria gonorrhoeae.

A bank of gonococcal DNA was constructed in the lambda gt11 expression vector. immunological screening of the bank resulted in the isolation of a clone that contains the structural gene of protein III. In addition, several clones reactive with mAbs specific for the H8 antigen were isolated. DNA hybridization studies revealed that these H8-reactive clones were derived from three different gonococcal genes. When the products produced by these clones were used to absorb antibodies from a rabbit antiserum, and the eluted antibodies were used in immunological studies, it could be shown that the parent gonococcus expressed the product of two of these H8 genes, and in strain R10, these had Mr of approximately 19,700 21,200 respectively. The larger form has not been recognized hitherto because the epitope reactive with the H8 mAb may be masked in this product.

Antigens, Bacterial↗

Rabbit C-reactive protein. Biosynthesis and characterization of cDNA clones.

To study the biosynthesis of rabbit C-reactive protein (CRP), a cDNA library was constructed from CRP mRNA-enriched polysomal poly(A) RNA. Four recombinant plasmids, designated pCX9, pCX23, pCX28, and pCX39, from 39 positive clones were sequenced and found to represent overlapping clones. DNA sequencing of CRP cDNA and primer extension of the 5'-end of CRP mRNA have demonstrated that the complete length of rabbit CRP mRNA consists of 2331 nucleotides and a terminal poly(A) segment. Analysis of the resulting sequence indicated that rabbit CRP mRNA contained a 5'-noncoding region of 107 nucleotides, a leader sequence encoding 20 amino acids, a coding region covering 205 amino acids, and a 3'-noncoding region of 1549 nucleotides. The 3'-noncoding region contained a consensus AAUAAA sequence that is 105 nucleotides upstream from the 3'-terminal poly(A) segment. Using an in vitro translation system, we have confirmed that CRP is synthesized as a precursor polypeptide (Mr approximately equal to 26,000) which undergoes processing to form the mature polypeptide (Mr approximately equal to 23,500). The CRP precursor failed to display a calcium-dependent affinity for phosphorylcholine ligand as demonstrated by mature CRP, suggesting that the phosphorylcholine-binding site of CRP only formed after processing. Northern blot analysis suggested that following induction with turpentine, liver was the only site where CRP mRNA synthesis could be demonstrated and that the change in mRNA concentration correlated with the course of CRP production. Southern blot analysis of liver genomic DNA indicated a single gene copy for CRP.

Amino Acid Sequence↗

Interactions of gonococci with HeLa cells: attachment, detachment, replication, penetration, and the role of protein II.

Colony variants of Neisseria gonorrhoeae differ in their interactions with eucaryotic cells. When gonococci were cultivated with HeLa cell monolayers, the opacity phenotype (Op) became increasingly dominant in the subpopulation of organisms which adhered to the HeLa cells. Once bound, Op organisms displayed very low levels of detachment. Adherent Op gonococci exhibited generation times up to threefold greater than cultures containing gonococci in the absence of HeLa cells. In addition, the progeny of adherent Op organisms remained bound to the HeLa cell monolayer. Both piliated (P+) and transparent (Tr) colony types attached to HeLa cells, but their progeny were retained less efficiently. Gonococci bound to HeLa cells were subjected to the bactericidal action of fresh rat serum and approximately 0.5 to 2.5% survived, irrespective of their opacity or piliation phenotype. Incubation with gentamicin resulted in a 10- to 50-fold further reduction in viability. Pretreatment of HeLa cell monolayers with the microfilament-disrupting agent cytochalasin b diminished gonococcal survival in either serum or gentamicin by up to eightfold. In contrast, cytochalasin b treatment did not decrease survival of the commensal organism N. sicca. The data suggest that very few gonococci are completely interiorized and a small proportion of adherent gonococci are partially protected from the soluble-phase environment by HeLa cells.

Bacterial Adhesion↗

Correlation between G2m(n) immunoglobulin allotype and human antibody response and susceptibility to polysaccharide encapsulated bacteria.

To determine whether genetic factors influence the human antibody response to polysaccharides, we correlated Ig allotypes with the concentrations of antibody to 14 bacterial capsular antigens in 130 actively immunized Caucasian adults. The 88 individuals possessing G2m(n), an allotype antigen of IgG2 subclass heavy chains, had significantly higher postimmunization antibody levels to Haemophilus influenzae type b (Hib) and 8 of 11 pneumococcal types (P less than 0.05) than the 42 lacking this antigen. For Hib, pneumococcus type 14, and meningococcus group C, an increased response was observed in IgG class but not in IgM or IgA classes of antibody. The G2m(n) positive individuals also had higher preimmunization antibody levels to most polysaccharide antigens. Total IgG2 concentrations were correlated with the mean postimmunization antibody concentrations to pneumococci (P = 0.005), but this correlation was independent of G2m(n) by multiple regression analysis. To determine if the lack of G2m(n) was associated with increased susceptibility to infection, we compared the frequencies of various Ig allotypes in 98 children infected with Hib and 98 matched controls. Caucasian children with Hib infections other than epiglottitis were significantly more likely to lack the G2m(n) allotype than controls (P less than 0.05). G2m(n) negative Caucasian children less than or equal to 18 mo old have a 5.1-fold higher risk of nonepiglottitic Hib infections than G2m(n) positive children (P less than 0.01). We conclude that allotypic variants of the gamma-2 heavy chain genes, or genes in linkage equilibrium with them, exert a regulatory influence on the caucasian antibody response to a variety of immunologically distinct bacterial polysaccharide antigens. Young Caucasian children of the low responder phenotype, i.e., those lacking the G2m(n) allotype, are genetically predisposed to Hib and perhaps other bacterial infections.

Adult↗

Antigenic analysis of gonococcal pili using monoclonal antibodies.

A bank of mouse monoclonal antibodies has been produced with reactivity to gonococcal pili to investigate epitopes of the pilus structural protein, pilin. Pili of Neisseria gonorrhoeae strains R10 and MS11 were used as immunogens to elicit 19 monoclonal antibodies reactive with the homologous pili type in ELISA. Of the 19 antibodies, 16 demonstrated type-specific reactivity and 3 were cross-reactive with heterologous pili. Reactivity of the antibodies with the carboxyterminal, cyanogen bromide fragment (CB-3) of R10 pilin allowed their classification into three groups. The first group (10 antibodies) were R10 specific and equally reactive with the R10 CB-3 fragment. The second group (6) were also type specific but demonstrated poor reactivity with the CB-3 fragment. This suggested that the epitopes of the first group are linear, and those of the second group, nonlinear. The third group (3), consisting of the cross-reactive antibodies, were not reactive with the CB-3 fragment. Two of the antibodies in group 3 were examined in detail to localize their epitopes. The epitope of one, 9B9/H5, was shown to be a linear determinant. This antibody was reactive with a fragment of MS11 pilin (residues 31-111) and to a synthetic peptide representing residues 69-84 in MS11 pilin. The epitope was more finely mapped, with shorter synthetic peptides conjugated to bovine serum albumin, to an eight amino acid segment (residues 69-76). The epitope of 1E8/G8, a strongly reactive antibody, proved elusive to this type of analysis and probably results from conformational restraints. The significance of species-specific epitopes in the pilin protein is discussed.

Amino Acid Sequence↗

A surface receptor specific for human IgA on group B streptococci possessing the Ibc protein antigen.

A number of group B streptococcal strains of various serotypes, Ia, Ib, Ic, II, and III were examined for their ability to bind human IgG and IgA. No strains of group B streptococci were found to bind IgG, but many strains possessing the Ibc protein antigen(s) were found to bind a significant amount of IgA. The extent of IgA binding correlated with the amount of a 130,000 mol wt, detergent-extractable protein, and reactivity with the Ic typing sera. Using nitrocellulose blots, it was found that the 130,000 mol wt protein bound human IgA. A method was developed to purify the protein while retaining its ability to bind human IgA. Using solid phase radioimmunoassays, it was determined that the protein bound to the Fc region of monomeric or polymeric IgA and that it failed to bind IgM or any IgG isotype.

Antibody Specificity↗

Identification of protein antigens of group B streptococci, with special reference to the Ibc antigens.

The protein antigens of prototypes of five types of group B streptococcal strains were extracted with HCl or Triton X-100, separated by sodium dodecyl sulfate polyacrylamide electrophoresis, transferred to nitrocellulose, and examined by immunochemical staining. The Ibc proteins are shown to consist of at least two distinct protein antigens and their breakdown products. One antigen, the "beta" antigen, exists primarily as a 130,000 mol wt protein that is also able to bind human IgA. The "alpha" antigen, which has no known function, appears as a number of proteins of various molecular weights from 20,000 to 120,000. Another set of antigens, the R protein antigens of type III strains, has been identified as a group of acid-labile proteins varying in molecular weight from 100,000 to 130,000. In addition, two previously undescribed antigens have been found that are common to all five group B types.

Animals↗

Gonococcal pili. Primary structure and receptor binding domain.

The complete amino acid sequence of pilin from gonococcal strain MS11 and the sequence of constant and variable regions from strain R10 pilin have been determined in order to elucidate the structural basis for adherence function, antigenic diversity, and polymeric structure. The MS11 pilin sequence consists of 159 amino acids in a single polypeptide chain with two cysteines in disulfide linkage and serine-bonded phosphate residues. TC-2 (31-111), a soluble monomeric pilus peptide prepared by arginine-specific digestion, bound human endocervical, but not buccal or HeLa cells and therefore is postulated to encompass the receptor binding domain. Variable regions of CNBr-3 appear to confer antigenic diversity and comprise segments in which changes in the position of charged residues occur in hydrophilic, beta-turns. Residues 2-21 and 202-221 of gonococcal pilins and lower eucaryotic actins, respectively, exhibit 50% homology. When these residues are arranged at intervals of 100 degrees of arc on "helical wheels," the identical amino acids comprise a hydrophobic face on one side of the helix. This observation, the hydrophobic character of this region and the tendency for TC-1 (residues 1-30) to aggregate in water, suggest that this stretch interacts with other subunits to stabilize polymeric structure.

Amino Acid Sequence↗

Purification and partial characterization of the opacity-associated proteins of Neisseria gonorrhoeae.

Gonococci, grown on agar, frequently give rise to opaque colonies. This opacity phenotype is associated with the presence of one or more outer membrane proteins of approximately 28,000 mol weight. These proteins are included within a class of proteins named proteins II. A method is described to isolate and purify the opacity-associated proteins from Neisseria gonorrhoeae. This method uses high concentrations of calcium and a zwitterionic detergent at pH 4.0. Under these conditions proteins II are readily solubilized from the outer membrane. Further purification is achieved by ion exchange and molecular sieve chromatography in the presence of the zwitterionic detergent. The opacity-associated proteins are very basic with isoelectric points varying between 9.0 to 10.0. Further evidence for their basic nature is their behavior on ion exchange chromatography and their amino acid composition.

Amino Acid Sequence↗

A rapid, sensitive method for detection of alkaline phosphatase-conjugated anti-antibody on Western blots.

A rapid, sensitive method has been developed to detect antibody-antigen complexes on "Western blots." The methods of H. Towbin, T. Staehlin, and J. Gordon were used to separate and blot the antigens onto nitrocellulose. The remaining sites of attachment were blocked and the nitrocellulose was washed with polyoxyethylenesorbitan monolaurate (Tween 20). The blot was then reacted with the antiserum or hybridoma supernate to be tested. After the antigen-antibody reaction was completed, the blot was washed and treated with anti-antibody which had been conjugated to alkaline phosphatase. The alkaline phosphatase was detected by the reduction of the tetrazolium salt to diformazan by the hydrogen ions released in the formation of indigo by the reaction of the phosphatase on the indoxyl phosphate. The advantages of this method over previously described techniques are (1) use of Tween 20 allows the blot to be stained with Coomassie blue, (2) the substrates of the alkaline phosphatase reaction are stable for long periods of time, (3) the reaction products form an intense blue color which does not fade, (4) the resolution is extremely good with little to no band broadening, (5) the reaction is sensitive to picogram quantities of antigen, and (6) the reaction is quantitative.

Alkaline Phosphatase↗

Isolation of a high molecular weight polyphosphate from Neisseria gonorrhoeae.

Neisseria gonorrhoeae, as well as other Neisseriae, produce polyphosphate. This polyphosphate exists in two forms. Approximately half of it is loosely associated with the cells and can be recovered by washing in neutral buffers under conditions in which no significant lysis of the cells is observed. The other half is either intracellular or tightly associated, because it requires digestion of the cells with perchloric acid or sodium hypochlorite. Polyphosphate obtained by both methods was purified by column chromatography and chemically characterized. In contrast to other organisms, gonococci do not respond with increased polyphosphate synthesis when shifted from phosphate starvation to a phosphate-rich medium. In addition, gonococcal polyphosphate does not serve as a depletable phosphate source during phosphate starvation. All strains of Neisseriae examined produce substantial amounts of polyphosphate.

Chromatography, Ion Exchange↗