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Biomedical subjects

D Linton

Publications and source records attributed to D Linton.

At least 19 recordsLinked to original sources

The Campylobacter jejuni general glycosylation system is important for attachment to human epithelial cells and in the colonization of chicks.

It has recently been shown that the enteropathogen Campylobacter jejuni has an N-linked general protein glycosylation pathway (Pgl) that modifies many of the organism's proteins. To determine the role of the N-linked general glycosylation in C jejuni, the authors studied the pglH gene, which shows high similarity to a family of sugar transferases. pglH mutants were constructed in strains 81116 and 11168H. Both mutants were shown to be deficient in their ability to glycosylate a number of C. jejuni proteins, but their lipooligosaccharide and capsule were unaffected. The pglH mutants had significantly reduced ability to adhere to and invade human epithelial Caco-2 cells. Additionally, the 81116 pglH mutant was severely affected in its ability to colonize chicks. These results suggest that glycosylation is important for the attachment of C. jejuni to human and chicken host cells and imply a role for glycoproteins in the pathogenesis of C. jejuni.

Animals↗

Chlamydia trachomatis infection in a colposcopy unit: an audit of a fast track referral system for infected patients to a genitourinary medicine department and a survey of patients' demography, clinical findings and partner details.

We had previously shown that screening and treating patients for Chlamydia trachomatis prior to termination of pregnancy significantly reduces postoperative morbidity. Our success led us to consider screening women attending our colposcopy unit and this was introduced in 1998. However, it became apparent that a formal protocol was needed for managing women who had positive results to ensure that all patients and their partners were adequately treated. An interdepartmental protocol was devised for fast track referral of infected patients to the Genitourinary Medicine (GUM) clinic Health Advisor who arranged immediate treatment and partner notification. A re-audit, presented here, has shown that the introduction of the protocol has resulted in all infected patients receiving adequate treatment and partner notification with minimal use of doctor time or disruption of routine GUM services. We suggest that our system is effective and could be extended to other clinics where chlamydia screening is carried out.

Adolescent↗

Deciphering Campylobacter jejuni cell surface interactions from the genome sequence.

The completion of the Campylobacter jejuni genome sequence is a landmark in Campylobacter research. Discoveries directly arising from these data include the identification of a capsular polysaccharide, extensive capacity for phase variable gene expression and lipo-oligosaccharide structural phase variation. The recent identification of a unique system of general protein glycosylation in C. jejuni, a C. jejuni protein that is translocated into eukaryotic cells, and plasmid-encoded components of a putative type IV secretion system are likely to be significant in terms of the host-pathogen interaction.

Antigenic Variation↗

Whole genome comparison of Campylobacter jejuni human isolates using a low-cost microarray reveals extensive genetic diversity.

Campylobacter jejuni is the leading cause of bacterial food-borne diarrhoeal disease throughout the world, and yet is still a poorly understood pathogen. Whole genome microarray comparisons of 11 C. jejuni strains of diverse origin identified genes in up to 30 NCTC 11168 loci ranging from 0.7 to 18.7 kb that are either absent or highly divergent in these isolates. Many of these regions are associated with the biosynthesis of surface structures including flagella, lipo-oligosaccharide, and the newly identified capsule. Other strain-variable genes of known function include those responsible for iron acquisition, DNA restriction/modification, and sialylation. In fact, at least 21% of genes in the sequenced strain appear dispensable as they are absent or highly divergent in one or more of the isolates tested, thus defining 1300 C. jejuni core genes. Such core genes contribute mainly to metabolic, biosynthetic, cellular, and regulatory processes, but many virulence determinants are also conserved. Comparison of the capsule biosynthesis locus revealed conservation of all the genes in this region in strains with the same Penner serotype as strain NCTC 11168. By contrast, between 5 and 17 NCTC 11168 genes in this region are either absent or highly divergent in strains of a different serotype from the sequenced strain, providing further evidence that the capsule accounts for Penner serotype specificity. These studies reveal extensive genetic diversity among C. jejuni strains and pave the way toward identifying correlates of pathogenicity and developing improved epidemiological tools for this problematic pathogen.

Campylobacter jejuni↗

Genetic and biochemical evidence of a Campylobacter jejuni capsular polysaccharide that accounts for Penner serotype specificity.

Campylobacter jejuni, a Gram-negative spiral bacterium, is the most common bacterial cause of acute human gastroenteritis and is increasingly recognized for its association with the serious post-infection neurological complications of the Miller-Fisher and Guillain-Barré syndromes. C. jejuni lipopolysaccharide (LPS) is thought to be involved in the pathogenesis of both uncomplicated infection and more serious sequelae, yet the LPS remains poorly characterized. Current studies on C. jejuni suggest that all strains produce lipooligosaccharide (LOS), with about one-third of strains also producing high-molecular-weight LPS (referred to as O-antigen). In this report, we demonstrate the presence of the high-molecular-weight LPS in all C. jejuni strains tested. Furthermore, we show that this LPS is biochemically and genetically unrelated to LOS and is similar to group II and group III capsular polysaccharides. All tested kpsM, kpsS and kpsC mutants of C. jejuni lost the ability to produce O-antigen. Moreover, this correlated with serotype changes. We demonstrate for the first time that the previously described O-antigen of C. jejuni is a capsular polysaccharide and a common component of the thermostable antigen used for serotyping of C. jejuni.

ATP-Binding Cassette Transporters↗

Multiple N-acetyl neuraminic acid synthetase (neuB) genes in Campylobacter jejuni: identification and characterization of the gene involved in sialylation of lipo-oligosaccharide.

N-acetyl neuraminic acid (NANA) is a common constituent of Campylobacter jejuni lipo-oligosaccharide (LOS). Such structures often mimic human gangliosides and are thought to be involved in the triggering of Guillain-Barré syndrome (GBS) and Miller-Fisher syndrome (MFS) following C. jejuni infection. Analysis of the C. jejuni NCTC 11168 genome sequence identified three putative NANA synthetase genes termed neuB1, neuB2 and neuB3. The NANA synthetase activity of all three C. jejuni neuB gene products was confirmed by complementation experiments in an Escherichia coli neuB-deficient strain. Isogenic mutants were created in all three neuB genes, and for one such mutant (neuB1) LOS was shown to have increased mobility. C. jejuni NCTC 11168 wild-type LOS bound cholera toxin, indicating the presence of NANA in a LOS structure mimicking the ganglioside GM1. This property was lost in the neuB1 mutant. Gas chromatography-mass spectrometry and fast atom bombardment-mass spectrometry analysis of LOS from wild-type and the neuB1 mutant strain demonstrated the lack of NANA in the latter. Expression of the neuB1 gene in E. coli confirmed that NeuB1 was capable of in vitro NANA biosynthesis through condensation of N-acetyl-D-mannosamine and phosphoenolpyruvate. Southern analysis demonstrated that the neuB1 gene was confined to strains of C. jejuni with LOS containing a single NANA residue. Mutagenesis of neuB2 and neuB3 did not affect LOS, but neuB3 mutants were aflagellate and non-motile. No phenotype was evident for neuB2 mutants in strain NCTC 11168, but for strain G1 the flagellin protein from the neuB2 mutant showed an apparent reduction in molecular size relative to the wild type. Thus, the neuB genes of C. jejuni appear to be involved in the biosynthesis of at least two distinct surface structures: LOS and flagella.

Base Sequence↗

Phase variation of a beta-1,3 galactosyltransferase involved in generation of the ganglioside GM1-like lipo-oligosaccharide of Campylobacter jejuni.

Ganglioside mimicry by Campylobacter jejuni lipo-oligosaccharide (LOS) is thought to be a critical factor in the triggering of the Guillain-Barré and Miller-Fisher syndrome neuropathies after C. jejuni infection. The combination of a completed genome sequence and a ganglioside GM1-like LOS structure makes C. jejuni NCTC 11168 a useful model strain for the identification and characterization of the genes involved in the biosynthesis of ganglioside-mimicking LOS. Genome analysis identified a putative LOS biosynthetic cluster and, from this, we describe a putative gene (ORF Cj1139c), which we have termed wlaN, with a significant level of similarity to a number of bacterial glycosyltransferases. Mutation of this gene in C. jejuni NCTC 11168 resulted in a LOS molecule of increased electrophoretic mobility, which also failed to bind cholera toxin. Comparison of LOS structural data from wild type and the mutant strain indicated lack of a terminal beta-1,3-linked galactose residue in the latter. The wlaN gene product was demonstrated unambiguously as a beta-1,3 galactosyltransferase responsible for converting GM2-like LOS structures to GM1-like by in vitro expression. We also show that the presence of an intragenic homopolymeric tract renders the expression of a functional wlaN gene product phase variable, resulting in distinct C. jejuni NCTC 11168 cell populations with alternate GM1 or GM2 ganglioside-mimicking LOS structures. The distribution of wlaN among a number of C. jejuni strains with known LOS structure was determined and, for C. jejuni NCTC 12500, similar wlaN gene phase variation was shown to occur, so that this strain has the potential to synthesize a GM1-like LOS structure as well as the ganglioside GM2-like LOS structure proposed in the literature.

Amino Acid Sequence↗

Warfarin skin necrosis: local and systemic factors.

Warfarin induced skin necrosis occurs in 0.01-0.1% of warfarin treated patients. The usual presentation is that of painful lesions developing in obese women after the initiation of warfarin treatment. The lesions usually evolve into full thickness skin necrosis within a few days. Although the exact mechanism is not totally clear, low levels of Protein C or S, either functional or inherited, are associated with many of the cases. We report the case of a 17-year-old patient treated with warfarin because of iliofemoral deep vein thrombosis post abortion. The patient developed several huge haemorrhagic blisters on the affected leg. The condition rapidly developed into full thickness skin and fat necrosis. The necrotic lesions were excised and eventually covered with skin graft. The combination of the patient tendency towards hyper-coagulation and the local factors is discussed.

Adolescent↗

Campylobacter lanienae sp. nov., a new species isolated from workers in an abattoir.

Campylobacter-like organisms were isolated from the faeces of healthy individuals during a hygiene survey of abattoir workers. The strains, which exhibited characteristics of Campylobacter, being non-glucose-fermenting, oxidase- and catalase-positive, Gram-negative, motile rods, were identified to the genus level by a PCR assay. Nucleotide sequence analysis of the 16S rRNA gene, DNA homology experiments and determination of G + C content demonstrated that they constituted a previously undescribed species, whose nearest phylogenetic neighbours were Campylobacter hyointestinalis subsp. hyointestinalis, Campylobacter fetus and Campylobacter mucosalis. The name Campylobacter lanienae sp. nov. is proposed for this taxon and species-specific PCR primers were evaluated which will find use in the study of its epidemiology, prevalence and pathogenicity.

Abattoirs↗

Campylobacter coli strains with enlarged flagellin genes isolated from river water.

A group of campylobacters isolated from river water were found to possess unusually large flagellin genes. Both phenotype and serology were consistent with identification as Campylobacter coli. Phylogenetic analysis of small (16S, rrs) and large subunit (23S, rrl) rRNA genes of a representative strain, NCTC 13006, demonstrated high levels of relatedness with C. jejuni and C. coli (99.1 and 98.3% similarity for 16S; 99.3 and 99.4% similarity for 23S). Large flagellin proteins were demonstrated by SDS-PAGE analysis. The flaA and flaB genes were sequenced and aligned with known campylobacter flagellin amino acid sequences. The encoded FlaA protein of the new group exhibited a high degree of divergence from other Campylobacter species. Within the central variable region of FlaA, a further hypervariable domain was identified containing characteristic repeated motifs. Separate pairwise alignments performed for the variable regions of the polypeptide indicated these large fla genes were more closely related to those of C. upsaliensis than to those of C. coli or C. jejuni.

Amino Acid Sequence↗

Sequence similarities between large subunit ribosomal RNA gene intervening sequences from different Helicobacter species.

When the 23S rRNA genes from several Helicobacter species were amplified by PCR and compared with similar amplicons derived from H. pylori, they were seen to be enlarged in size. Sequencing of these enlarged genes from H. mustelae, H. canis (two strains) and H. muridarum identified insertions of novel sequence (intervening sequences, IVSs) sized between 93 and 377 bp located at nt 545, in place of an 8-nt sequence in the conventionally sized H. pylori gene. These IVSs were not present elsewhere in the genome. All strains with such IVSs lacked intact 23S rRNA which was replaced by two fragment whose sizes were consistent with cleavage at either side of the particular IVS. The predicted secondary structures of the four IVSs were characterised by base pairing at the 5' and 3' ends to form a stem. The four IVSs exhibited significant sequence inter-relationships. Further relationships were also observed between them and similar elements in both small and large subunit rRNA genes of other Helicobacter and Campylobacter species. Alignment of each IVS with the other such elements identified blocks of related sequence consistent with insertion/deletion events, indicating possible evolutionary relationships.

Base Sequence↗

Polymerase chain reaction detection and speciation of Campylobacter upsaliensis and C. helveticus in human faeces and comparison with culture techniques.

A polymerase chain reaction (PCR) assay based on the 16S rRNA gene and an improved DNA extraction procedure were developed for the direct detection and differentiation of Campylobacter upsaliensis and C. helveticus in seeded human faeces. The PCR assay was compared with culture detection by a membrane filter (MF) technique and on selective agar (SA) containing 8 mg l-1 cefoperazone. Both MF culture and the PCR assay detected 10(5) colony-forming units (cfu) g-1 faeces. Selective agar culture of some strains could detect as few as 10(3) cfu g-1 faeces. However, some strains were susceptible to cefoperazone and either failed to grow or were detected only with reduced sensitivity in the presence of the antibiotic. Detection by MF and SA both required 48-96 h incubation in a microaerobic atmosphere and did not specifically identify the isolate. By contrast, the PCR assay could be completed within 8 h and accurately identified the two phenotypically similar species, C. upsaliensis and C. helveticus.

Agar↗

Anaerobic (bacterial) vaginosis and premalignant disease of the cervix.

Nitrosamines are carcinogenic substances found in cigarette smoke, and it is known that female smokers have an increased risk of cervical carcinoma and premalignant change. Nitrosamines may also be formed due to the combination of amines and nitrites in an acidic medium. This study has shown a statistically significant association between anaerobic vaginosis which produce amines and cervical intraepithelial neoplasia 2 and 3. In addition nitrate reducing organisms are found in the acidic lower genital tract in a significant number of cases. It is therefore theoretically possible that nitrosamines may be an important agent in the development of premalignant disease of the cervix.

Journal Article↗

PCR detection, identification to species level, and fingerprinting of Campylobacter jejuni and Campylobacter coli direct from diarrheic samples.

Three sets of primers were designed for PCR detection and differentiation of Campylobacter jejuni and Campylobacter coli. The first PCR assay was designed to coidentify C. jejuni and C. coli based on their 16S rRNA gene sequences. The second PCR assay, based on the hippuricase gene sequence, identified all tested reference strains of C. jejuni and also strains of that species which lack detectable hippuricase activity. The third PCR assay, based on the sequence of a cloned (putative) aspartokinase gene and the downstream open reading frame, identified all tested reference strains of C. coli. The assays will find immediate application in the rapid identification to species level of isolates. The assays combine with a protocol for purification of total DNA from fecal samples to allow reproducible PCR identification of campylobacters directly from stools. Of 20 clinical samples from which campylobacters had been cultured, we detected C. jejuni in 17, C. coli in 2, and coinfection of C. jejuni and Campylobacter hyointestinalis in 1. These results were concordant with culture and phenotypic identification to species level. Strain typing by PCR-restriction fragment length polymorphism of the flagellin (flaA) gene detected identical flaA types in fecal DNA and the corresponding campylobacter isolate. Twenty-five Campylobacter-negative stool samples gave no reaction with the PCR assays. These PCR assays can rapidly define the occurrence, species incidence, and flaA genotypes of enteropathogenic campylobacters.

Amidohydrolases↗

High-resolution genotyping of Campylobacter coli identifies clones of epidemiologic and evolutionary significance.

Campylobacter coli strains from clinical and other sources were examined in terms of O (heat-stabile; HS) serotype and by several molecular typing techniques. Restriction fragment length polymorphism (RFLP) around the three 16S rRNA genes revealed 10 variants, none found in Campylobacter jejuni. RFLP analysis of a polymerase chain reaction amplicon generated from the flagellin gene (flaA) yielded 11 polymorphism groups, some of them linked to HS serotypes. Enlarged flaA genes, contributing three further polymorphisms, were detected in strains isolated from fresh water. Restriction of the genome with SmaI and pulsed-field gel electrophoresis was the most discriminatory typing method, detecting 33 macrorestriction profiles that subtyped within HS serotypes. The coincidence of HS serotype and the three genotypic markers identified clonal lines of evolutionary and epidemiologic significance.

Animals↗

Molecular subtyping of prevalent M serotypes of Streptococcus pyogenes causing invasive disease.

Reproducible methodologies and a scheme for high-resolution genotyping of Streptococcus pyogenes were defined with respect to a study of six predominant M serotypes causing invasive group A streptococcal disease in the United Kingdom. Serotype reference strains were compared with nine clinical isolates of each serotype from patients with diseases such as pneumonia, puerperal sepsis, toxic shock-like-syndrome, cellulitis, or necrotizing fasciitis. Four enzymes were evaluated for their discriminatory power in 16S rRNA gene-specific ribotyping. Discriminatory power was greatest with EcoRI, which generated serotype-specific ribotypes, and with SacI, which could subdivide strains of the same M serotype. Twenty-five combined ribotypes were found among the 60 strains, and the indices of discriminatory power (D values) of this method varied from 0.51 within serotype M1 to 0.98 within strains of serotype M5. Macrorestriction with the rarely cutting endonuclease SmaI and pulsed-field gel electrophoresis gave D values varying from 0.37 within serotype M1 to the maximal 1.0 within serotype M5. Comparison of macrorestriction profiles revealed various degrees of genetic heterogeneity within M serotypes. Strains of M1, M3, M6, and M11 exhibited clonally related macrorestriction profiles, while those of R28 and M5 strains were consistent with polyphyletic origin.

Antigens, Bacterial↗

An intervening sequence (IVS) in the 16S rRNA gene of the eubacterium Helicobacter canis.

PCR amplicons enlarged by approximately 250bp were generated from the 16S rRNA (rrs) genes of certain strains of the recently described Helicobacter species, H. canis. The DNA sequence of the rrs gene of one such strain was determined, and it was shown that an intervening sequence (IVS) of 235bp followed nucleotide 199 in the rrs sequence. In four other H. canis strains, identical or similar IVSs were found, always at the same location in the rrs gene. The secondary structures of the RNA transcripts of the IVSs were predicted. They were characterised by the presence of a conserved stem-loop structure, a potential recognition site for RNA processing enzymes. Ribosomal RNA was compared from a strain of H. canis with and without the IVS-containing rrs gene. In the former 16S rRNA appeared as two fragments, whose sizes were consistent with cleavage at either side of the IVS, and which were not subsequently religated. The IVS sequence was not represented elsewhere in the H. canis genome. Its evolutionary significance is discussed.

Base Sequence↗