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D S Stephens

Publications and source records attributed to D S Stephens.

At least 55 records · Page 3Linked to original sources

Membrane glycerophospholipid biosynthesis in Neisseria meningitidis and Neisseria gonorrhoeae: identification, characterization, and mutagenesis of a lysophosphatidic acid acyltransferase.

Lysophosphatidic acid (LPA) acyltransferases of Neisseria meningitidis and Neisseria gonorrhoeae were identified which share homology with other prokaryotic and eukaryotic LPA acyltransferases. In Escherichia coli, the conversion of LPA to phosphatidic acid, performed by the 1-acyl-sn-glycerol-3-phosphate acyltransferase PlsC, is a critical intermediate step in the biosynthesis of membrane glycerophospholipids. A Tn916-generated mutant of a serogroup B meningococcal strain was identified that exhibited increased amounts of capsular polysaccharide, as shown by colony immunoblots, and a threefold increase in the number of assembled pili. The single, truncated 3.8 kb Tn916 insertion in the meningococcal mutant was localized within a 771 bp open reading frame, The gonococcal equivalent of this gene was identified by transformation with the cloned meningococcal mutant gene. In N. gonorrhoeae, the mutation increased piliation fivefold. The insertions were found to be within a gene that was subsequently designated nlaA (neisserial LPA acyltransferase). The predicted neisserial LPA acyltransferases were homologous (>20% identity, >40% amino acid similarity) to the family of PlsC protein homologues. A cloned copy of the meningococcal nlaA gene complemented in trans a temperature-sensitive E. coli PlsCts- mutant. Tn916 and omega-cassette insertional inactivations of the neisserial nlaA genes altered the membrane glycerophospholipid compositions of both N. meningitidis and N. gonorrhoeae but were not lethal. Therefore, the pathogenic Neisseria spp. appear to be able to utilize alternative enzyme(s) to produce phosphatidic acid. This hypothesis is supported by the observation that, although the amounts of mature glycerophospholipids were altered in the meningococcal and the gonococcal nlaA mutants, glycerophospholipid synthesis was detectable at significant levels. In addition, acyltransferase enzymatic activity, while reduced in the gonococcal nlaA mutant, was increased in the meningococcal nlaA mutant. We postulate that the pathogenic Neisseria spp. are able to utilize alternate acyltransferases to produce glycerophospholipids in the absence of nlaA enzymatic activity. Implementation of these secondary enzymes results in alterations of glycerophospholipid composition that lead to pleiotropic effects on the cell surface components, including effects on capsule and piliation.

Acyltransferases↗

Microheterogeneity of Neisseria lipooligosaccharide: analysis of a UDP-glucose 4-epimerase mutant of Neisseria meningitidis NMB.

Neisseria meningitidis is the etiologic agent of epidemic bacterial meningitis. Lipooligosaccharide (LOS) is a principal virulence factor associated with the organism, and sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of LOS has demonstrated that there is considerable microheterogeneity in the molecule. To begin our understanding of the nature of this heterogeneity, we identified a Tn916-generated LOS mutant of N. meningitidis NMB (serotype L3, monoclonal antibodies 3F11+, 6B4+, and 4C4-) that was designated NMB-SS3 (monoclonal antibodies 3F11-, 6B4-, and 4C4+). The transposon insertion was localized to the amino terminus of the functional copy of the UDP-Glc 4-epimerase gene (galE). UDP-Glc 4-epimerase (EC 5.1.3.2) activity was present in N. meningitidis NMB but not in NMB-SS3, indicating that the Tn916 insertion had abolished this activity. Mass spectrometric analysis of the LOS from strain NMB revealed multiple species of LOS, which is consistent with extensive microheterogeneity. While the most predominant structure was consistent with a terminal lacto-N-neotetrose structure found in other strains of N. meningitidis, Gal beta 1-->4GlcNAc beta 1-->3Gal beta 1-->4Glc-->(GlcNAc)-->Hep2PEA-->KDO2 (where Hep is heptose, PEA is phosphoethanolamine, and KDO is 2-keto-3-deoxymannooctulosonic acid), structures containing repetitive hexoses which are not precursors of this structure were also identified. Compositional analysis of LOS from strain NMB-SS3 revealed that there were no galactoses present in the structure. Mass spectrometric analysis of O-deacylated LOS revealed the presence of multiple species, with the predominant LOS species in this mutant strain formed by the Hex-->(HexNAc)-->Hep2PEA-->KDO2 (where Hex is hexose and HexNAc is N-acetylhexosamine) structure. However, LOS structures with repetitive hexoses, e.g., Hexn-->(HexNAc)-->Hep2PEA-->KDO2 (n = 2, 3, or 4), emanating from one or both heptoses were also identified. Since this mutant cannot synthesize UDP-Gal, these structures must repetitive glucoses. These data suggest that NMB has a glycosyltransferase capable of polymerizing glucose moieties as an alternative biosynthetic pathway to the wild-type lacto-N-neotetrose structure.

Base Sequence↗

Lipooligosaccharide biosynthesis in pathogenic Neisseria. Cloning, identification, and characterization of the phosphoglucomutase gene.

The lipooligosaccharide (LOS) of pathogenic Neisseria is an important factor in disease pathogenesis. Little is known about the genes involved in neisserial LOS biosynthesis. To elucidate specific LOS biosynthetic genes, we screened a Tn916 library that was constructed in Neisseria meningitidis strain NMB. This strain expresses a single LOS that has an molecular mass of 4.5 kDa and binds monoclonal antibody (mAb) 3F11. This library was screened using a mAb panel that recognizes structural differences in neisserial LOS oligosaccharides. A stable LOS mutant of strain NMB was identified which we designated NMB-R6. This mutant expressed an LOS with an molecular mass of approximately 3.1-3.2 kDa and did not bind mAb 3F11. Genomic DNA from this mutant transformed N. meningitidis strain NMB to the tetracycline resistant NMB-R6 phenotype greater than 10(-4)/recipient/micrograms of DNA. In addition, we transformed Neisseria gonorrhoeae strain 1291 (LOS phenotype molecular mass 4.5 kDa, mAb 3F11+) to the NMB-R6 LOS phenotype with N. meningitidis NMB-R6 genomic DNA. Analysis of N. gonorrhoeae strain 1291-R6 LOS by mass spectroscopy showed that the LOS oligosaccharide structure is GlcNAc-->Hep2phosphoethanolamine-->2-keto-3-deoxymannooctuloson ic acid (where Hep is heptose). Sequence analysis showed that the transposon is inserted into the 3' end of a gene that has homology to the human phosphoglucomutase (PGM) gene. Sequence comparison indicated that the putative PGM gene in N. gonorrhoeae 1291 and N. meningitidis NMB had 92% identity at the DNA level. PGM and glucokinase activity was present in cell free extracts of N. meningitidis NMB and N. gonorrhoeae strain 1291. N. meningitidis NMB-R6 and N. gonorrhoeae strain 1291-R6 had no detectable PGM activity, whereas glucokinase activity was similar to the wild type strains. PGM activity can be reconstituted in N. meningitidis strain NMB-R6 by transformation with the cloned PGM gene. SDS-polyacrylamide gel electrophoresis demonstrated that NMB-R6 transformed with the PGM gene expressed the 3F11+, 4.5-kDa LOS of the parent NMB strain. The inability of N. meningitidis NMB-R6 and N. gonorrhoeae strain 1291-R6 to convert glucose 6-phosphate to glucose 1-phosphate results in the truncated LOS phenotype expressed by these mutants.

Amino Acid Sequence↗

Tn916-generated, lipooligosaccharide mutants of Neisseria meningitidis and Neisseria gonorrhoeae.

A library of Tn916-generated, tetracycline-resistant (Tc) mutants of the group B Neisseri meningitidis strain NMB was screened by using monoclonal antibodies (MAbs) that recognize structural differences in neisserial lipooligosaccharide (LOS). The LOS of parental strain NMB had a relative molecular mass of 4.5 kDa, reacted with MAbs 3F11 and 6B4 but not with MAb 4C4 or 6E4, and contained a lacto-N-neotetrose unit. Two phenotypically stable mutants, SS3 and R6, altered in LOS, were identified by colony immunoblots, electrophoresis, and Western immunoblots. The LOS of mutant SS3 was 3.4 kDa and reacted with MAbs 4C4 and 6E4 but not MAb 3E11 or 6B4. The LOS of mutant R6 was 3.1 to 3.2 kDa and reacted with MAb 6E4 but not MAb 3F11, 6B4, or 4C4. Thus, the LOSs of the R6 and SS3 mutants were predicted to contain different truncations of the core oligosaccharide. The LOS phenotype of each mutant was linked to Tc(r), as determined by transformation of the parent strain with DNA from the mutant. Southern hybridizations and single-specific-primer PCR revealed in each mutant a single truncated tn916 insertion which had lost genes required for mobilization. Tn916 mutagenesis was used to identify two distinct genetic sites in the meningococcal chromosome involved in biosynthesis of the oligosaccharide chain of LOS and to create genetically defined LOS mutants of N. meningitidis and Neisseria gonorrhoeae.

Antibodies, Bacterial↗

Identification of a genetic locus involved in the biosynthesis of N-acetyl-D-mannosamine, a precursor of the (alpha 2-->8)-linked polysialic acid capsule of serogroup B Neisseria meningitidis.

We characterized the genetic defect of a capsule-deficient serogroup B meningococcal strain created by Tn916 mutagenesis. The transposon insertion interrupts a capsule biosynthesis gene, synX, which is involved in the production of N-acetyl-D-mannosamine, a precursor of the (alpha 2-->8)-linked polysialic acid capsule of serogroup B meningococci.

Amino Acid Sequence↗

A population-based assessment of invasive disease due to group B Streptococcus in nonpregnant adults.

BACKGROUND: Group B streptococci (Streptococcus agalactiae) are a major cause of meningitis and septicemia in neonates and pregnant women, but the importance of group B streptococcal disease in nonpregnant adults has not been clearly defined. METHODS: We conducted a prospective surveillance of the pathogens responsible for meningitis for a period of 24 months in 35 hospitals and a referral laboratory in metropolitan Atlanta. We reviewed the clinical and laboratory records of all the nonpregnant adults identified as having invasive group B streptococcal disease during this period. RESULTS: During 1989 and 1990 there were 424 patients with invasive group B streptococcal disease (annual incidence, 9.2 cases per 100,000 population). Of these patients, 46 percent were 1 month of age or younger, 6 percent were older than 1 month but younger than 18 years of age, and 48 percent were 18 or older. Men and nonpregnant women accounted for 68 percent (n = 140) of all cases among adults (annual incidence, 4.4 per 100,000). Clinical and laboratory records were available for 137. In the nonpregnant adult patients (age, 18 to 99 years), the most common clinical diagnoses were skin, soft-tissue, or bone infection (in 36 percent); bacteremia with no identified source (30 percent); urosepsis (14 percent); pneumonia (9 percent); and peritonitis (7 percent). Risk factors included older age (> or = 60 years), the presence of diabetes mellitus, the presence of malignant neoplasms, and infection with the human immunodeficiency virus. The mortality rate in nonpregnant adults was 21 percent, accounting for 67 percent of all deaths related to group B streptococcal infection during the surveillance period. CONCLUSIONS: Invasive group B streptococcal infection is a major problem not only in pregnant women and neonates but also in nonpregnant adults, especially those who are elderly and those who have chronic diseases.

AIDS-Related Opportunistic Infections↗

Increased risk of meningitis and bacteremia due to Listeria monocytogenes in patients with human immunodeficiency virus infection.

The incidence, demographics, and clinical outcome of infections due to Listeria monocytogenes in individuals infected with the human immunodeficiency virus (HIV) were evaluated by prospective population-based surveillance. During a 2-year study period, 37 cases of invasive listeriosis occurred in metropolitan Atlanta (annual incidence, 0.8 case per 100,000 population). Seven of these cases occurred in known HIV-infected individuals (19% of all cases); five had an AIDS-defining illness, and the other two had CD4 lymphocyte cell counts of < 200/microL. The estimated incidence of listeriosis among HIV-infected patients in metropolitan Atlanta was 52 cases per 100,000 patients per year, and among patients with AIDS it was 115 cases per 100,000 patients per year, rates 65-145 times higher than those among the general population. HIV-associated cases occurred in adults who were 29-62 years of age and in postnatal infants who were 2 and 6 months of age. Mortality among the HIV-infected group was 29%. L. monocytogenes serotypes 1/2a, 1/2b, and 4b were isolated from the HIV-infected patients. L. monocytogenes is an important opportunistic pathogen in HIV-infected patients.

AIDS-Related Opportunistic Infections↗

Effect of the (alpha 2-->8)-linked polysialic acid capsule on adherence of Neisseria meningitidis to human mucosal cells.

The effect of (alpha 2-->8)-linked polysialic acid on the adherence of Neisseria meningitidis to human mucosal cells was examined using a serogroup B-encapsulated strain and a capsule-defective (Cap-) mutant of this strain. The Cap- mutant contains a single truncated insert of Tn916 in a 3.8-kb HaeIII chromosomal fragment. The Tn916 insert was shown to be responsible for the phenotype by linkage studies and by demonstration that loss of the insert restored encapsulation. The Cap- mutant consistently adhered to human buccal epithelial cell in greater numbers than the encapsulated parent, but the increase in adherence was less than twofold. Adherence of the Cap- mutant during infection of human nasopharyngeal organ cultures was 1.3- to 6.5-fold greater than that of the encapsulated parent. However, specificity of adherence of meningococci for nonciliated nasopharyngeal epithelial cells and the ability to be internalized by these cells was not due to the (alpha 2-->8)-linked polysialic acid capsule.

Bacterial Adhesion↗

Carriage of Haemophilus influenzae type b in children after widespread vaccination with conjugate Haemophilus influenzae type b vaccines.

Rates of invasive Haemophilus influenzae type b (Hib) disease in children decreased very rapidly after licensure of Hib conjugate vaccines. A role for a vaccine-related reduction in nasopharyngeal carriage of Hib has been suggested. We studied oropharyngeal carriage of Hib and vaccination rates in a population of 2- to 5-year-old children in metropolitan Atlanta. Among 584 children 75% were vaccinated with an Hib conjugate vaccine, 17% had not been vaccinated and 8% had no vaccination records available. Forty-one percent of the children were colonized with H. influenzae. One child was colonized with Hib. Hib carriage (0.17%; upper 95% confidence interval boundary, 0.97%) was substantially lower than the estimates of Hib carriage from prior studies of children who had not received Hib conjugate vaccines. Our data are consistent with a decline in Hib carriage induced by widespread use of conjugate Hib vaccines, which may have contributed to the decline of Hib disease in United States children.

Bacterial Capsules↗

Analysis in Neisseria meningitidis and other Neisseria species of genes homologous to the FKBP immunophilin family.

The immunophilin family of FK506-binding proteins (FKBPs), involved in eukaryotic protein-folding and cell regulation, have recently been found to have prokaryotic homologues. Genes with sequences homologous to those encoding human FKBPs were examined in Neisseria species. An FKBP DNA sequence was present, as shown by the polymerase chain reaction and Southern blotting experiments, in the chromosome of Neisseria meningitidis (14 strains) and in all 11 different commensal Neisseria spp. studied, but was not found in Neisseria gonorrhoeae (11 strains tested) or in Moraxella catarrhalis. The nucleotide and predicted protein sequences of the FKBP-encoding domain from five of the meningococcal strains were highly conserved (e.g. > or = 97% homologous). The meningococcal nucleotide sequence was > or = 93% homologous and the consensus meningococcal protein sequence was > or = 97% homologous to FKBP sequences found in seven different commensal Neisseria spp. The meningococcal nucleotide and predicted protein sequences were > or = 59% homologous to the conserved C-terminus of the human FKBP gene family. The FKBP nucleotide sequence was present as a single copy in the chromosome of commensal Neisseria spp. and in most strains of N. meningitidis. The FKBP gene was linked to the silent pilin locus, pilS, in class II-piliated meningococcal strains. In meningococcal strains expressing class I pili, the FKBP gene was linked to one of several pilS loci but not the pilE locus present in these strains. FKBP genes found in commensal Neisseria spp. were not linked to known pilin loci.

Amino Acid Sequence↗

Deletions of Tn916-like transposons are implicated in tetM-mediated resistance in pathogenic Neisseria.

Using the tetM-containing conjugative transposon Tn916 as a mutagenesis tool, we identified two distinct classes of transposon insertions in the meningococcal chromosome. Class I insertions have an intact copy of Tn916 that appears to have transposed by a novel recombinational mechanism, similar to the transposition of conjugative transposons in Gram-positive bacteria. Class II insertions were characterized by deletions of Tn916 but preservation of the tetM determinant. In addition, we identified Class II Tn916-like insertions in the naturally occurring 25.2 MDa tetM-containing plasmids of both Neisseria meningitidis and Neisseria gonorrhoeae. The turncated Tn916-like insertions appeared to be present in the same site in these two plasmids; however, the deletions of the transposon were different. Plasmid sequence adjacent to the truncated transposon in the 25.2 MDa plasmids was found in a tetracycline-sensitive N. gonorrhoeae 24.5 MDa conjugative plasmid. These data suggest that the 25.2 MDa plasmids are the result of one or a series of Class II Tn916-like insertions into 24.5 MDa conjugative plasmids. Class II insertions of Tn916-like transposons are implicated in the dissemination of tetM resistance in pathogenic Neisseria.

Base Sequence↗

Invasive Haemophilus influenzae disease in adults. A prospective, population-based surveillance. CDC Meningitis Surveillance Group.

OBJECTIVE: To define the incidence of and possible risk factors for invasive Haemophilus influenzae disease in adults. DESIGN: Prospective, population-based surveillance of hospital and referral bacteriology laboratories. SETTING: Metropolitan Atlanta, Georgia community. PATIENTS: All patients with H. influenzae isolated from normally sterile sites (blood, cerebrospinal fluid, joint, pleura) from 1 December 1988 through 31 May 1990. MEASUREMENTS: Isolates of H. influenzae were analyzed for serotype and biotype status, outer membrane proteins, lipooligosaccharide phenotypes, ribotyping patterns and beta-lactamase production. RESULTS: A total of 194 cases of invasive H. influenzae occurred (annual incidence of 5.6 cases/100,000 population), of which 47 (24%) were in adults 18 years old or older (annual incidence 1.7 cases/100,000 adults). Adults with invasive H. influenzae ranged from 18 to 96 years; 79% were women. Bacteremic pneumonia accounted for 70% of the adult cases. Other sources for invasive H. influenzae in adults were obstetric infections, epiglottitis, and tracheobronchitis; one patient had meningitis. Underlying conditions were noted in 92% of the patients. Chronic lung disease was the most common risk factor, but pregnancy (annual incidence, 4.9/100,000 pregnant women), HIV infection (annual incidence, 41/100,000 known HIV-infected adults), and malignancy were also important. Overall mortality was 28% in adults, and over half of pregnancy-related infections resulted in fetal death. Fifty percent of the 40 isolates available for testing were serotype b; 47.5%, nontypable; and 2.5%, serotype f. Sixteen of the 45 isolates (36%) were ampicillin-resistant. Based on biotypes, outer membrane protein profiles, lipooligosaccharide phenotypes, and ribotyping patterns, the type b isolates showed less heterogeneity than the nontypable isolates but were distinguishable from one another. CONCLUSIONS: Adult cases currently represent one quarter of all cases of invasive H. influenzae disease. Half of the reported adult cases were caused by type b H. influenzae, and the rate of ampicillin resistance in H. influenzae isolates from adults was higher than previously reported. Haemophilus influenzae is an important cause of bacteremia in compromised adults.

Adolescent↗