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Characterization of a novel Vibrio pathogenicity island (VPI-2) encoding neuraminidase (nanH) among toxigenic Vibrio cholerae isolates.

Acquisition of virulence genes encoded on mobile genetic elements has played an important role in the emergence of pathogenic isolates of Vibrio cholerae, the causative agent of the diarrhoeal disease cholera. The genes encoding cholera toxin (ctxAB), the main cause of profuse secretory diarrhoea in cholera, are encoded on a filamentous bacteriophage CTXphi. The toxin coregulated pilus (TCP), an essential intestinal colonization factor, was originally designated as part of a pathogenicity island named the Vibrio pathogenicity island (VPI), but this island has more recently been proposed to be the genome of a filamentous phage, VPIphi. In this study, it is shown that nanH, which encodes neuraminidase, maps within a novel pathogenicity island designated VPI-2. The 57.3 kb VPI-2 has all of the characteristic features of a pathogenicity island, including the presence of a bacteriophage-like integrase (int), insertion in a tRNA gene (serine) and the presence of direct repeats at the chromosomal integration sites. Additionally, the G+C content of VPI-2 (42 mol%) is considerably lower than that of the entire genome (47 mol%). VPI-2 encodes several gene clusters, such as a restriction modification system (hsdR and hsdM) and genes required for the utilization of amino sugars (nan-nag region) as well as neuraminidase. To determine the distribution of VPI-2 among V. cholerae, 78 natural isolates were examined using PCR and Southern hybridization analysis for the presence of this region. All toxigenic V. cholerae O1 serogroup isolates examined contained VPI-2, whereas non-toxigenic isolates lacked the island. Of 14 V. cholerae O139 serogroup isolates examined, only one strain, MO2, contained the entire 57.3 kb island, whereas 13 O139 isolates contained only a 20.0 kb region with most of the 5' region of VPI-2 which included nanH deleted in these strains.

Humans↗

Wound botulism in the UK and Ireland.

There are three main, naturally occurring, epidemiological types of botulism: food-borne, intestinal colonization (infant botulism) and wound botulism. The neurological signs and symptoms are the same for all three epidemiological types and may include respiratory paralysis. Wound botulism is caused by growth of cells and release of toxin in vivo, is associated with traumatic wounds and abscesses and has been reported in drug users, such as those injecting heroin or sniffing cocaine. Up to the end of 1999 there were no confirmed cases of wound botulism in the UK. Between the beginning of 2000 and the end of December 2002, there were 33 clinically diagnosed cases of wound botulism in the UK and Ireland. All cases had injected heroin into muscle or by 'skin popping'. The clinical diagnosis was confirmed by laboratory tests in 20 of these cases. Eighteen cases were caused by type A toxin and two by type B toxin.

Adult↗

Campylobacter jejuni gene expression in response to iron limitation and the role of Fur.

Campylobacter jejuni is a zoonotic pathogen and the most common cause of bacterial foodborne diarrhoeal illness worldwide. To establish intestinal colonization prior to either a commensal or pathogenic interaction with the host, C. jejuni will encounter iron-limited niches where there is likely to be intense competition from the host and normal microbiota for iron. To gain a better understanding of iron homeostasis and the role of ferric uptake regulator (Fur) in iron acquisition in C. jejuni, a proteomic and transcriptome analysis of wild-type and fur mutant strains in iron-rich and iron-limited growth conditions was carried out. All of the proposed iron-transport systems for haemin, ferric iron and enterochelin, as well as the putative iron-transport genes p19, Cj1658, Cj0177, Cj0178 and cfrA, were expressed at higher levels in the wild-type strain under iron limitation and in the fur mutant in iron-rich conditions, suggesting that they were regulated by Fur. Genes encoding a previously uncharacterized ABC transport system (Cj1660-Cj1663) also appeared to be Fur regulated, supporting a role for these genes in iron uptake. Several promoters containing consensus Fur boxes that were identified in a previous bioinformatics search appeared not to be regulated by iron or Fur, indicating that the Fur box consensus needs experimental refinement. Binding of purified Fur to the promoters upstream of the p19, CfrA and CeuB operons was verified using an electrophoretic mobility shift assay (EMSA). These results also implicated Fur as having a role in the regulation of several genes, including fumarate hydratase, that showed decreased expression in response to iron limitation. The known PerR promoters were also derepressed in the C. jejuni Fur mutant, suggesting that they might be co-regulated in response to iron and peroxide stress. These results provide new insights into the effects of iron on metabolism and oxidative stress response as well as the regulatory role of Fur.

Animals↗

Structural features, properties and regulation of the outer-membrane protein W (OmpW) of Vibrio cholerae.

The outer-membrane protein OmpW of Vibrio cholerae was studied with respect to its structure, functional properties and regulation of expression. On SDS-PAGE, the membrane-associated form of OmpW protein (solubilized by either 0.1 % or 2 % SDS at 25 degrees C) migrated as a monomer of 19 kDa that changed to 21 kDa on boiling. The protein was hyperexpressed in Escherichia coli in the histidine-tagged form and the purified His(6)-OmpW (heated or unheated) migrated as a 23 kDa protein on SDS-PAGE. Circular dichroism and Fourier-transform infrared spectroscopic analyses of the recombinant protein showed the presence of beta-structures ( approximately 40 %) with minor amounts (8-15 %) of alpha-helix. These results were consistent with those obtained by computational analysis of the sequence data of the protein using the secondary structure prediction program Jnet. The recombinant protein did not exhibit any porin-like property in a liposome-swelling assay. An antiserum to the purified protein induced a moderate level (66.6 % and 33.3 % at 1 : 50 and 1 : 100 dilutions, respectively) of passive protection against live vibrio challenge in a suckling mouse model. OmpW-deficient mutants of V. cholerae strains were generated by insertion mutagenesis. In a competitive assay in mice, the intestinal colonization activities of these mutants were found to be either only marginally diminished (for O1 strains) or 10-fold less (for an O139 strain) as compared to those of the corresponding wild-type strains. The OmpW protein was expressed in vivo as well as in vitro in liquid culture medium devoid of glucose. Interestingly, the glucose-dependent regulation of OmpW expression was less prominent in a ToxR(-) mutant of V. cholerae. Further, the expression of OmpW protein was found to be dependent on in vitro cultural conditions such as temperature, salinity, and availability of nutrients or oxygen. These results suggest that the modulation of OmpW expression by environmental factors may be linked to the adaptive response of the organism under stress conditions.

Bacterial Outer Membrane Proteins↗

Crypt fission and crypt number in the small and large bowel of postnatal rats.

The aim of this investigation was to study crypt fission, a process which may be instrumental in regulating crypt number in the intestine. Young Holtzman rats were killed at various times after parturition and samples of the small intestine and colon were removed and processed. A microdissection technique was used to separate crypts from other structures. Crypts were scored as normal or fissioning. The percentage of crypts in fission (PCF) reached peak values of 25% and 52% in the small bowel and colon, respectively, at 21 days post-parturition. From this time onward, the PCF dropped until the adult value of approximately 7% was reached in each site. During this same period, the number of crypts increased from 1.9 X 10(6) to 3.3 X 10(6) in the small bowel and 2.2 X 10(5) to 6.5 X 10(5) in the colon. Thus an inverse relationship between the percentage of crypts in fission and crypt number was found. Distribution of fissure heights in fissioning crypts did not change as the animal aged. The majority of the fissures were found in the lower 1/4 of the fissioning crypts. This suggests that as soon as the fissure extends beyond the stem cell zone, division into two crypts soon occurs.

Aging↗

Comparison of mucosal drug conjugative rates along the gastrointestinal tract of female sheep.

The comparative distribution of p-nitrophenol UDP-glucuronosyl-transferase, 1-chloro-2,4-dinitrobenzene glutathione-S-transferase and sulphamethazine N-acetyltransferase activities was studied along the gastrointestinal mucosa of female Lacaune sheep. Gastrointestinal mucosa was characterized by a very low and unequal N-acetyltransferase activity when activities were expressed per g of wet organ. The duodenum contained highest activities (4.1 nmol/g min). When results were expressed per mg of cytosolic protein, the duodenal activity (0.64 nmol/mg min) was sixfold higher than in liver (0.11 nmol/mg min). There was a lack in N-acetyltransferase activity accepting isoniazid as substrate. Glucuronosyltransferase activity was approximately threefold higher in microsomal fractions of the mucosal lining of gastric and colonic intestine (0.43-0.58 nmol/g min) than in small intestine or caecum (0.10-0.26 nmol/mg min). Concerning cytosolic glutathione S-transferase activity, two- to threefold higher activities were obtained in omasum, jejunum, duodenum and ileum (1021-2164 nmol/g min) than in other parts (341-799 nmol/g min) when results were expressed per g of wet organ. These data were compared with corresponding hepatic activities determined in the same six female sheep.

Acetates↗

Longus: a long pilus ultrastructure produced by human enterotoxigenic Escherichia coli.

Enterotoxigenic Escherichia coli (ETEC) causes an acute cholera-like diarrhoea in both humans and animals. We describe a new pilus termed longus produced by ETEC, which can extend for over 20 microns from the cell surface. Longus is composed of a repeating subunit of 22 kDa and its NH2-terminal amino acid sequence revealed homology with the toxin-coregulated pilus of Vibrio cholerae, the bundle-forming pilus of enteropathogenic E. coli and type IV pilins of some Gram-negative bacterial pathogens. The longus structural gene (lngA) is encoded in a large plasmid and was cloned in a 5 kb fragment, which proved to be sufficient for pilus production and assembly in E. coli K-12. The presence of lngA was restricted to human ETEC strains. In contrast to other ETEC pili, lngA was widely distributed among ETEC strains independent of their geographical origin, serotype, toxin production, or other pili antigens expressed. Longus is a new member of the type IV pili family, which may represent a highly conserved intestinal colonization factor of ETEC. Common antigenic determinants exist among longus and their pilin subunits, produced by heterologous ETEC. Longus could be significant in the immunoprophylaxis of diarrhoeal disease caused by ETEC, especially against those strains in which no colonization factors have been identified and that produce heat-stable toxin only.

Amino Acid Sequence↗

Tissue extravasation of albumin from intraabdominal trauma in rats.

Intraabdominal surgery tends to lower circulating plasma volume by mechanisms unrelated to bleeding and evaporation. In chloralose-anesthetized rats, the tissue clearance of radiolabelled albumin was determined by a double isotope method. Animals were subjected to a standardized abdominal trauma, eliciting minimal bleeding and evaporation, and others served as controls. The trauma significantly increased tissue albumin extravasation in abdominal skin, abdominal wall, pancreas, small intestine, colon, mesentery and diaphragm. Considering the mass of the respective tissues, a substantial portion of the albumin extravasation took place in the abdominal wall. No increased albumin clearance was found in extra-abdominal tissues. It is suggested that abdominal surgery decreases plasma volume by extravasation in the operation field.

Abdominal Injuries↗

Functional analysis of lymphostatin homologues in enterohaemorrhagic Escherichia coli.

Enteropathogenic Escherichia coli contain a large chromosomal gene (lifA) that encodes lymphostatin, a predicted 365 kDa protein that inhibits the mitogen-activated proliferation of peripheral blood lymphocytes and lamina propria mononuclear cells and the synthesis of proinflammatory cytokines. Non-O157 serotypes of enterohaemorrhagic E. coli (EHEC) contain a highly homologous gene, designated efa1 (EHEC factor for adherence), which influences adherence to epithelial cells in vitro and intestinal colonization in calves. Serotype O157:H7 EHEC strains contain a truncated version of this gene (efa1') and a pO157-encoded homologue of lifA/efa1 (toxB). Here we report for the first time that efa1 inhibits mitogen-activated proliferation of bovine peripheral blood lymphocytes by EHEC O103:H2, but that E. coli K-12 strains expressing the N-terminal and central portions of the protein lack activity. While a Shiga toxin-negative E. coli O157:H7 strain was shown to possess lymphostatin-like activity, deletion of efa1' or toxB, singly or in combination, failed to significantly relieve the inhibitory effect.

Animals↗

Identification and characterization of EspK, a type III secreted effector protein of enterohaemorrhagic Escherichia coli O157:H7.

Enterohaemorrhagic Escherichia coli (EHEC) causes bloody diarrhoea in humans and deploys a type III secretion system (T3SS) encoded by the locus of enterocyte effacement to elicit the formation of attaching and effacing (AE) lesions on intestinal epithelia. Here, we report the identification of a new secreted substrate of this system, z1829, which is encoded by cryptic prophage CP-933N. Elevated secretion of a beta-lactamase-z1829 fusion protein was detected upon mutation of sepD in EHEC O157:H7 and the fusion protein was translocated into infected epithelial cells in a T3SS-dependent manner; accordingly, we named the protein EspK. In common with the related Salmonella enterica type III secreted effector GogB, we observed that EspK localized to the cytoplasm when transiently expressed in COS-7 cells using EspK-specific antiserum. Inactivation of espK did not impair adherence or actin nucleation during infection of HeLa cells but affected persistence of EHEC O157:H7 in the intestines of orally inoculated calves. Inactivation of an orthologue of espK in the murine AE pathogen Citrobacter rodentium did not impair intestinal colonization in mice.

Animals↗

Adherence and toxicity of Yersinia enterocolitica 0:3 and 0:9 containing virulence-associated plasmids for various cultured cells.

Plasmid (47 and 44 Mdal, respectively) containing strains of Yersinia enterocolitica 0:3 and 0:9 adhered to and were toxic for HEp-2 human epithelial and Y-1 adrenal cells in vitro, At 37 degrees C, but not at room temperature, the adhesion of the bacteria lead to rounding and partial detachment of the cultured cells. UV-inactivated plasmid-positive Y. enterocolitica were neither adherent nor toxic for the cells but were readily endocytosed by HEp-2 cells. The adherence of plasmid-positive Y. enterocolitica 0:3 and 0:9 on epithelial cells may be pathogenetically important as an initial step for intestinal colonization, and possibly in Y. enterocolitica-induced diarrhoea. Plasmid-positive Y. enterocolitica also adhered to the surface of cultured human macrophages and were apparently not phagocytosed as effectively as the plasmid-negative derivatives of the same bacteria. Thus resistance to phagocytosis may form an additional plasmid-dependent virulence property of Y. enterocolitica 0:3 and 0:9.

Adhesiveness↗

Plastins: versatile modulators of actin organization in (patho)physiological cellular processes.

Many actin-binding proteins are expressed in eukaryotic cells. These polypeptides assist in stabilizing and rearranging the organization of the actin cytoskeleton in response to external stimuli, or during cell migration and adhesion. Here we review a particular set of actin-binding proteins called plastins. Plastins (also called fimbrins) belong to a subclass of actin-binding proteins known as actin bundling proteins. Three isoforms have been characterized in mammals: T-plastin is expressed in cells from solid tissue, whereas L-plastin occurs predominantly in hematopoietic cells. The third isoform, I-plastin, is specifically expressed in the small intestine, colon and kidney. These proteins share the unique property of cross-linking actin filaments into tight bundles. Although plastins are primarily involved in regulation of the actin cytoskeleton, they possess some unique features. For instance, they are implicated in invasion by pathogenic bacteria such as Shigella flexneri and Salmonella typhimurium. Also, L-plastin plays an important role in leukocyte function. T-plastin, on the other hand, is possibly involved in DNA repair. Finally, both T- and L-plastin are implicated in several diseases, and L-plastin is considered to be a valuable marker for cancer.

Biomarkers, Tumor↗

Extreme eosinophilia with disseminated eosinophilic granulomatous disease in a horse.

Extreme eosinophilia with disseminated eosinophilic granulomatous disease is described in a 4-year-old Arabian mare. Clinical signs included weight loss, coughing, jugular distention, and ventral edema. Cutaneous lesions were not observed. Eosinophilic inflammation was observed in cytologic specimens from the respiratory tract, body cavities, and lymph nodes. At necropsy, a 20-cm diameter intrathoracic mass was observed. Smaller nodules were present in the lymph nodes, liver, spleen, adrenal glands, pancreas, and skeletal muscle. Histologically, these masses and nodules were characterized by infiltrates of eosinophils, macrophages, and multinucleated giant cells, reactive fibroplasia; and multifocal eosinophilic coagula. Microscopically, mild eosinophilic infiltrates were observed in sections of stomach, small intestine, colon, and pleura; however, gross lesions were not observed in these tissues at necropsy. The etiology of the extreme eosinophilia and disseminated eosinophilic granulomatous disease in this horse was not determined.

Journal Article↗

Electrical and synaptic properties of myenteric plexus neurones in the terminal large intestine of the guinea-pig.

1. Intracellular recording methods were used to investigate the cellular neurophysiology of ganglion cells in the myenteric plexus of the guinea-pig rectum. The rectum is a region of the gastrointestinal tract with specialized functions that include reflex relaxation of the internal and sphincter during defaecation. Electrical and synaptic properties of myenteric neurones in the rectum had not previously been studied. Therefore, the overall aim of the work was to describe electrical and synaptic behaviour and identify neurophysiological properties of rectal neurones that might be related to specialization of function in this region of the gut. 2. Thirty-four (58%) of fifty-nine impaled cells had electrophysiological properties of AH/type 2 enteric neurones. Eighteen (30%) behaved like type 3 neurones and only two (3%) behaved like S/type 1 enteric neurones. Three per cent were presumably glial cells and the remainder were unclassifiable. 3. Nicotinic cholinergic fast EPSPs were recorded in six of thirty-four (18%) of AH/type 2 neurones and in all eighteen of the type 3 cells. Slow EPSPs occurred in five of thirty-four (15%) of AH/type 2 neurones and were absent from type 3 neurones. 4. Type 3 neurones received fast synaptic inputs from axons in each of the interganglionic fibre tracts that were connected with the ganglion containing the neurone. 5. AH/type 2 neurones were apparently multipolar neurones with long processes projecting into each of the interganglionic fibre tracts connected with the ganglion. Type 3 neurones did not have processes leaving the ganglion in the fibre tracts. 6. Run-down in amplitude of the fast EPSPs in type 3 neurones occurred when they were evoked at frequencies of 5 Hz or greater. 7. Presynaptic muscarinic cholinergic receptors behaved like autoreceptors in suppressing the release of acetylcholine at nicotinic synapses on type 3 neurones. 8. Application of 5-hydroxytryptamine, acetylcholine, substance P and forskolin mimicked the characteristics of slow EPSPs in the AH/type 2 neurones. 9. The principal difference between neuronal behaviour in the rectum and small intestine, colon and stomach was in the relative proportions of AH/type 2, S/type 1 and type 3 neurones. This is discussed in terms of the functional specialization of the rectum.

Acetylcholine↗

Lysogenic conversion by a filamentous phage encoding cholera toxin.

Vibrio cholerae, the causative agent of cholera, requires two coordinately regulated factors for full virulence: cholera toxin (CT), a potent enterotoxin, and toxin-coregulated pili (TCP), surface organelles required for intestinal colonization. The structural genes for CT are shown here to be encoded by a filamentous bacteriophage (designated CTXphi), which is related to coliphage M13. The CTXphi genome chromosomally integrated or replicated as a plasmid. CTXphi used TCP as its receptor and infected V. cholerae cells within the gastrointestinal tracts of mice more efficiently than under laboratory conditions. Thus, the emergence of toxigenic V. cholerae involves horizontal gene transfer that may depend on in vivo gene expression.

Amino Acid Sequence↗

Acute toxicity of aminoglycoside antibiotics as an aid in detecting botulism.

Gentamicin sulfate or neomycin sulfate injected intraperitoneally into 24- to 27-g mice at a dose of 6.2 mg per mouse elicited botulism-like responses in less than 30 min, but a dose of 3.1 mg per mouse had no observable effect. The normally nontoxic 3.1-mg aminoglycoside dose aggravated the illness induced by an earlier injection of Clostridium botulinum type A or B toxin; it was usually lethal in 2 to 20 min if the preexisting illness was moderate to severe and worsened the condition of mice for about 30 min if the preexisting botulism was mild. The aminoglycoside had no effect when given shortly after the botulinum toxin was injected intraperitoneally; the sensitized state followed a latent period. It rapidly produced botulism-like effects when given to mice which had responded to a mixture of botulinum toxin and another mouse toxic agent with an illness that did not include signs of botulism. An unexpected illness devoid of botulism-like effects was encountered during intestinal colonization of mice by C. botulinum. The appearance of botulism-like signs soon after 3.1 mg of gentamicin sulfate was injected supported other suggestions that this illness included botulism that was masked by the effects of a second cause.

Aminoglycosides↗

Novel putative galactose operon involving lacto-N-biose phosphorylase in Bifidobacterium longum.

A lacto-N-biose phosphorylase (LNBP) was purified from the cell extract of Bifidobacterium bifidum. Its N-terminal and internal amino acid sequences were homologous with those of the hypothetical protein of Bifidobacterium longum NCC2705 encoded by the BL1641 gene. The homologous gene of the type strain B. longum JCM1217, lnpA, was expressed in Escherichia coli to confirm that it encoded LNBP. No significant identity was found with any proteins with known function, indicating that LNBP should be classified in a new family. The lnpA gene is located in a novel putative operon for galactose metabolism that does not contain a galactokinase gene. The operon seems to be involved in intestinal colonization by bifidobacteria mediated by metabolism of mucin sugars. In addition, it may also resolve the question of the nature of the bifidus factor in human milk as the lacto-N-biose structure found in milk oligosaccharides.

Acetylglucosamine↗

Temporal quorum-sensing induction regulates Vibrio cholerae biofilm architecture.

Vibrio cholerae, the pathogen that causes cholera, also survives in aqueous reservoirs, probably in the form of biofilms. Quorum sensing negatively regulates V. cholerae biofilm formation through HapR, whose expression is induced at a high cell density. In this study, we show that the concentration of the quorum-sensing signal molecule CAI-1 is higher in biofilms than in planktonic cultures. By measuring hapR expression and activity, we found that the induction of quorum sensing in biofilm-associated cells occurs earlier. We further demonstrate that the timing of hapR expression is crucial for biofilm thickness, biofilm detachment rates, and intestinal colonization efficiency. These results suggest that V. cholerae is able to regulate its biofilm architecture by temporal induction of quorum-sensing systems.

Bacterial Proteins↗