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1.
Human gastric glycosphingolipids recognized by Helicobacter pylori vacuolating cytotoxin VacA 总被引:2,自引:0,他引:2
Roche N Ilver D Angström J Barone S Telford JL Teneberg S 《Microbes and infection / Institut Pasteur》2007,9(5):605-614
Many bacterial toxins utilize cell surface glycoconjugate receptors for attachment to target cells. In the present study the potential carbohydrate binding of Helicobacter pylori vacuolating cytotoxin VacA was investigated by binding to human gastric glycosphingolipids on thin-layer chromatograms. Thereby a distinct binding of the toxin to two compounds in the non-acid glycosphingolipid fraction was detected. The VacA-binding glycosphingolipids were isolated and characterized by mass spectrometry and proton NMR as galactosylceramide (Galbeta1Cer) and galabiosylceramide (Galalpha4Galbeta1Cer). Comparison of the binding preferences of the protein to reference glycosphingolipids from other sources showed an additional recognition of glucosylceramide (Glcbeta1Cer), lactosylceramide (Galbeta4Glcbeta1Cer) and globotriaosylceramide (Galalpha4Galbeta4Glcbeta1Cer). No binding to the glycosphingolipids recognized by the VacA holotoxin was obtained with a mutant toxin with deletion of the 37 kDa fragment of VacA (P58 molecule). Collectively our data show that the VacA cytotoxin is a glycosphingolipid binding protein, where the 37 kDa moiety is required for carbohydrate recognition. The ability to bind to short chain glycosphingolipids will position the toxin close to the cell membrane, which may facilitate toxin internalization. 相似文献
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Stimulation of adhesion molecule expression by Helicobacter pylori and increased neutrophil adhesion to human umbilical vein endothelial cells 总被引:1,自引:0,他引:1
Byrne MF Corcoran PA Atherton JC Sheehan KM Murray FE Fitzgerald DJ Murphy JF 《FEBS letters》2002,532(3):411-414
Helicobacter pylori upregulates endothelial adhesion molecules but the pattern is unclear. Human umbilical vein endothelial cells (HUVEC) were exposed to control medium or H. pylori 60190. Binding of monoclonal antibodies against P-selectin, E-selectin, vascular adhesion molecule-1 (VCAM-1) and intercellular adhesion molecule-1 (ICAM-1) was determined using enzyme-linked immunosorbent assay. Binding of polymorphonuclear leukocytes to HUVEC was determined on cells exposed as above. After 6 h exposure to H. pylori, there were 30%, 124%, 167% and 100% increases in P-selectin, E-selectin, VCAM-1 and ICAM-1 levels and a 400% increase in polymorphonuclear leukocyte adhesion in HUVEC exposed to H. pylori. Effects of incubation for other intervals between 0 and 18 h are also described. H. pylori exerts some of its effects on gastric mucosa via gastric vasculature. This study gives insight into the pattern of H. pylori-associated endothelial adhesion molecule upregulation. 相似文献
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The neutrophil-activating protein of Helicobacter pylori crosses endothelia to promote neutrophil adhesion in vivo 总被引:2,自引:0,他引:2
Polenghi A Bossi F Fischetti F Durigutto P Cabrelle A Tamassia N Cassatella MA Montecucco C Tedesco F de Bernard M 《Journal of immunology (Baltimore, Md. : 1950)》2007,178(3):1312-1320
Helicobacter pylori induces an acute inflammatory response followed by a chronic infection of the human gastric mucosa characterized by infiltration of neutrophils/polymorphonuclear cells (PMNs) and mononuclear cells. The H. pylori neutrophil-activating protein (HP-NAP) activates PMNs, monocytes, and mast cells, and promotes PMN adherence to the endothelium in vitro. By using intravital microscopy analysis of rat mesenteric venules exposed to HP-NAP, we demonstrated, for the first time in vivo, that HP-NAP efficiently crosses the endothelium and promotes a rapid PMN adhesion. This HP-NAP-induced adhesion depends on the acquisition of a high affinity state of beta(2) integrin on the plasma membrane of PMNs, and this conformational change requires a functional p38 MAPK. We also show that HP-NAP stimulates human PMNs to synthesize and release a number of chemokines, including CXCL8, CCL3, and CCL4. Collectively, these data strongly support a central role for HP-NAP in the inflammation process in vivo: indeed, HP-NAP not only recruits leukocytes from the vascular lumen, but also stimulates them to produce messengers that may contribute to the maintenance of the flogosis associated with the H. pylori infection. 相似文献
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Maria Hedlund Rui-Dong Duan Åke Nilsson & Catharina Svanborg 《Molecular microbiology》1998,29(5):1297-1306
Uropathogenic Escherichia coli attach to epithelial cells through P fimbriae that bind Galα1-4Galβ-oligosaccharide sequences in cell surface glycosphingolipids. The binding of P-fimbriated E. coli to uroepithelial cells causes the release of ceramide, activation of the ceramide signalling pathway and a cytokine response in the epithelial cells. The present study examined the molecular source of ceramide in human kidney A498 cells exposed to P-fimbriated E. coli . Agonists such as TNF-α and IL-1β released ceramide from sphingomyelin by the activation of endogenous sphingomyelinases and hydrolysis of sphingomyelin, and triggered an IL-6 response. P-fimbriated E. coli caused a slight increase in endogenous sphingomyelinase activity, but there was no associated sphingomyelin hydrolysis. Instead, the concentration of galactose-containing glycolipids decreased. We propose that P-fimbriated E. coli differ from other activators of the ceramide pathway, in that release of ceramide is from receptor glycolipids and not from sphingomyelin. Receptor breakdown may be an efficient host defence strategy, as it reduces the concentration of cell surface receptors, releases soluble receptor analogues and activates an inflammatory response. 相似文献
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近年来,抑制幽门螺杆菌(Helicobacter pylori Hp)对胃粘膜黏附已经成为了治疗Hp引起疾病的又一个新的研究课题.本文对近几年国内外研究者利用天然可抑制Hp黏附的活性物质进行了概述,旨在为研究和开发幽门螺杆菌新的治疗方法提供理论参考. 相似文献
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Hayashi S Sugiyama T Yokota K Isogai H Isogai E Shimomura H Oguma K Asaka M Hirai Y 《Microbiology and immunology》2000,44(7):557-562
Helicobacter pylori is a major etiological agent in gastroduodenal disorders. The adhesion of H. pylori to gastric epithelial cells is the initial step of H. pylori infection. Inhibition of H. pylori adhesion is thus a therapeutic target in the prevention of H. pylori infection. We have reported that rebamipide and ecabet sodium, mucoprotective antiulcer agents, independently inhibit H. pylori adhesion. However, the antiadhesion activity of each antiulcer agent was incomplete. Experiments were performed to evaluate the combined effect of rebamipide and ecabet sodium on H. pylori adhesion to gastric epithelial cells. MKN-28 and MKN-45 cells, derived from human gastric carcinomas, were used as target cells. Twelve clinical isolates of H. pylori were used in this study. We evaluated the effects of rebamipide and ecabet sodium, individually and in combination, on H. pylori adhesion to target cells quantitatively using our previously established enzyme-linked immunosorbent assay. Rebamipide and ecabet sodium each partially inhibited H. pylori adhesion. In contrast, adhesion was almost completely inhibited by pretreating target cells and H. pylori with the combination of rebamipide and ecabet sodium. Our studies suggest that the synergistic antiadhesion activity of rebamipide and ecabet sodium is greater than that of each antiulcer agent alone. 相似文献
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Reinhard J Basset C Holton J Binks M Youinou P Vaira D 《Journal of microbiological methods》2000,39(3):179-187
We have used confocal scanning microscopy of FITC-labelled bacteria to assess binding of Helicobacter pylori to stomach sections and to assess the effect of inhibitors on binding to the Lewis antigens. We have quantified the binding using an image manipulation package that is readily available on the web. Our results demonstrate heterogeneity of binding of Helicobacter pylori to tissue sections and that binding can be inhibited using synthetic Lewis B oligosaccharide. 相似文献
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Jeung S. Woo Byung H. Ha Tae G. Kim Yoong H. Lim Kyung H. Kim 《Biotechnology letters》2001,23(7):507-511
Horseradish peroxidase conjugation with fetuin, which expresses sialic acid-dependent binding specificity to Helicobacter pylori, was used to develop an enzyme-linked glycosorbent method. This method yielded results that were consistent with those from a hemagglutination assay using a microscope and allowed the quantitative analysis of inhibitors of sialic acid-dependent Helicobacter pylori adhesion to host cells. The results of inhibitor screening with carbohydrates, including commercially available polysaccharides and extracted from various sources, displayed not only the relative inhibition potencies among carbohydrates, but also their respective concentration-dependencies. 相似文献
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Previously Langford et al. (2006) developed the pIR203C04 complementation system for Helicobacter pylori, which can be used to complement and restore phenotypic effects in H. pylori mutant, and furthermore they used the complementation system in vivo experiments to animals without altering the ability of strain SSI to colonize mice. In their previous study, the pIR203C04
was able to transform 26695, SSI, J99, and 43504 H. pylori strains by an electroporation method. However, in the present study using a natural transformation the pIR203C04 transformed
only 26695 H. pylori but not SSI, J99, 7.13, and G27 H. pylori strains. Since the useful complementation system has a limitation of narrow selection among H. pylori strains, we redesigned the complementation system for the improvement. The same intergenic chromosomal site between hp0203 and hp0204 was utilized for the new complementation system because the insertion at the intergenic site didn’t show any polar effects
and disruption of other H. pylori genes. The genome sequence analysis showed that the intergenic regions among H. pylori strains may have too low homology to each others to do a homologous recombination. Thus, in addition to the short intergenic
region, the fragments of the new complementation system included 3′ conserved parts of hp0203 and hp0204 coding regions. Between the fragments there are a chloramphenicol acetyltransferase cassette and multicloning sites, resulting
in pKJMSH. DNA fragment of the interest can be cloned into the multicloning sites of pKJMSH and the fragment can be integrated
at the intergenic region of H. pylori chromosome by the homologous recombination. Indeed, by the natural transformation, pKJMSH was able to transform all five
H. pylori strains of 26695, SSI, J99, 7.13, and G27, which are common for the investigation of molecular pathogenesis. Thus, the new
pKJMSH complementation system is applicable to most H. pylori wild-type stains. 相似文献
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Linking Helicobacter pylori to gastric cancer 总被引:10,自引:0,他引:10
Blaser MJ 《Nature medicine》2000,6(4):376-377
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Tanaka K Yamada M Tamiya-Koizumi K Kannagi R Aoyama T Hara A Kyogashima M 《Glycoconjugate journal》2011,28(2):67-87
Free ceramides and glycosphingolipids (GSLs) are important components of the membrane microdomain and play significant roles
in cell survival. Recent studies have revealed that both fatty acids and long-chain bases (LCBs) are more diverse than expected,
in terms of i) alkyl chain length, ii) hydroxylation and iii) the presence or absence of double bonds. Electrospray ionization
mass spectrometry and matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) have been
well utilized to characterize sphingolipids with high throughput, but reports to date have not fully characterized various
types of ceramide species such as hydroxyl fatty acids and/or trihydroxy-LCBs of both free ceramides and the constituent ceramides
in neutral GSLs. We performed a systematic analysis of both ceramide species, including LCBs with nona-octadeca lengths using
MALDI-TOF MS with high-energy collision-induced dissociation (CID) at 20 keV. Using both protonated and sodiated ions, this
technique enabled us to propose general rules to discriminate between isomeric and isobaric ceramide species, unrelated to
the presence or absence of sugar chains. In addition, this high-energy CID generated 3,5A ions, indicating Hex1-4Hex linkage in the sugar chains. Using this method, we demonstrated distinct differences among ceramide
species, including free ceramides, sphingomyelins, and neutral GSLs of glucosylceramides, galactosylceramides, lactosylceramides,
globotriaosylceramides and Forssman glycolipids in the equine kidneys. 相似文献
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Lewis X structures in the O antigen side-chain promote adhesion of Helicobacter pylori to the gastric epithelium 总被引:4,自引:0,他引:4
Edwards NJ Monteiro MA Faller G Walsh EJ Moran AP Roberts IS High NJ 《Molecular microbiology》2000,35(6):1530-1539
Helicobacter pylori NCTC11637 expresses a lipopolysaccharide (LPS) that comprises an O antigen side-chain with structural homology to the human blood group antigen Lewis X (Le(x)). The role of this molecule in adhesion of H. pylori to gastric epithelial cells was investigated. Mutants expressing truncated LPS structures were generated through insertional mutagenesis of rfbM and galE; genes encode GDP mannose pyrophosphorylase and galactose epimerase respectively. Compositional and structural analysis revealed that the galE mutant expressed a rough LPS that lacked an O antigen side-chain. In contrast, an O antigen side-chain was still synthesized by the rfbM mutant, but it lacked fucose and no longer reacted with anti-Le(x) monoclonal antibodies (Mabs). The ability of these mutants to bind to paraffin-embedded sections from the antrum region of a human stomach was assessed. Adhesion of the wild type was characterized by tropic binding to the apical surface of mucosal epithelial cells and cells lining gastric pits. In contrast, both the rfbM and galE mutants failed to demonstrate tropic binding and adhered to the tissue surface in a haphazard manner. These results indicate that LPS and, more specifically, Le(x) structures in the O antigen side-chain play an important role in targeting H. pylori to specific cell lineages within the gastric mucosa. The role of Le(x) in this interaction was confirmed by the tropic binding of synthetic Le(x), conjugated to latex beads, to gastric tissue. The observed pattern of adhesion was indistinguishable from that of wild-type H. pylori. 相似文献
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Helicobacter pylori catalase 总被引:15,自引:0,他引:15
Helicobacter pylori is the major aetiological agent of gastroduodenitis in humans. Due to the potential importance of catalase in the growth and survival of Helicobacter pylori on the surface of inflamed mucosae, we have characterized catalase from H. pylori as a prelude to further studies on the function of the enzyme in vivo. The catalase activity of H. pylori was significantly affected by the presence of blood, serum or erythrocytes in the growth medium: the greatest activity was expressed when the bacterium was grown on medium containing serum. H. pylori catalase is a tetramer with a subunit Mr of 50,000. The enzyme had a pI of 9.0-9.3, was active over a broad pH range and was stable at 56 degrees C. It was non-competitively inhibited by sodium azide, and had no detectable peroxidase activity. The Km for the purified catalase was measured as 43 +/- 3 mM-H2O2 and the V as 60 +/- 3 mmol H2O2 min-1 (mg protein)-1. The native catalase has absorption maxima at 280 nm and 405 nm with further minor shoulders or peaks at 510 nm, 535 nm and 625 nm, consistent with the presence of an iron-porphyrin prosthetic group. 相似文献
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Motility is essential for Helicobacter pylori colonization. This review discusses the biochemistry, genetics and genomics of the H. pylori flagellum, and compares these features with well-characterized bacteria. 相似文献