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      Helicobacter pylori virulence genes

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          Abstract

          Helicobacter pylori ( H. pylori) is one of the most important human pathogens, infecting approximately half of the global population. Despite its high prevalence, only a subset of H. pylori infected individuals develop serious gastroduodenal pathology. The pathogenesis of H. pylori infection and disease outcome is thus thought to be mediated by an intricate interplay between host, environmental and bacterial virulence factors. H. pylori has adapted to the harsh milieu of the human stomach through possession of various virulence genes that enable survival of the bacteria in the acidic environment, movement towards the gastric epithelium, and attachment to gastric epithelial cells. These virulence factors enable successful colonization of the gastric mucosa and sustain persistent H. pylori infection, causing chronic inflammation and tissue damage, which may eventually lead to the development of peptic ulcers and gastric cancer. Numerous studies have focused on the prevalence and role of putative H. pylori virulence genes in disease pathogenesis. While several virulence factors with various functions have been identified, disease associations appear to be less evident, especially among different study populations. This review presents key findings on the most important H. pylori virulence genes, including several bacterial adhesins and toxins, in children and adults, and focuses on their prevalence, clinical significance and potential relationships.

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          Helicobacter pylori SabA adhesin in persistent infection and chronic inflammation.

          Helicobacter pylori adherence in the human gastric mucosa involves specific bacterial adhesins and cognate host receptors. Here, we identify sialyl-dimeric-Lewis x glycosphingolipid as a receptor for H. pylori and show that H. pylori infection induced formation of sialyl-Lewis x antigens in gastric epithelium in humans and in a Rhesus monkey. The corresponding sialic acid-binding adhesin (SabA) was isolated with the "retagging" method, and the underlying sabA gene (JHP662/HP0725) was identified. The ability of many H. pylori strains to adhere to sialylated glycoconjugates expressed during chronic inflammation might thus contribute to virulence and the extraordinary chronicity of H. pylori infection.
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            Mosaicism in vacuolating cytotoxin alleles of Helicobacter pylori. Association of specific vacA types with cytotoxin production and peptic ulceration.

            Approximately 50% of Helicobacter pylori strains produce a cytotoxin, encoded by vacA, that induces vacuolation of eukaryotic cells. Analysis of a clinically isolated tox- strain (Tx30a) indicated secretion of a 93-kDa product from a 3933-base pair vacA open reading frame. Characterization of 59 different H. pylori isolates indicated the existence of three different families of vacA signal sequences (s1a, s1b, and s2) and two different families of middle-region alleles (m1 and m2). All possible combinations of these vacA regions were identified, with the exception of s2/m1 (p < 0.001); this mosaic organization implies that recombination has occurred in vivo between vacA alleles. Type s1/m1 strains produced a higher level of cytotoxin activity in vitro than type s1/m2 strains; none of 19 type s2/m2 strains produced detectable cytotoxin activity. The presence of cagA (cytotoxin-associated gene A) was closely associated with the presence of vacA signal sequence type s1 (p < 0.001). Among patients with past or present peptic ulceration, 21 (91%) of 23 harbored type s1 strains compared with 16 (48%) of 33 patients without peptic ulcers; only 2 (10%) of 19 subjects harboring type s2 strains had past or present peptic ulcers (p < 0.005). Thus, specific vacA genotypes of H. pylori strains are associated with the level of in vitro cytotoxin activity as well as clinical consequences.
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              Risk for gastric cancer in people with CagA positive or CagA negative Helicobacter pylori infection.

              It is not known why some people with Helicobacter pylori infection develop gastric cancer whereas others do not. Whether the CagA phenotype of H pylori infection affected risk for cancer independently of other posited risk factors was evaluated. 242 persons who participated in a previous nested case-control study of gastric cancer. 179 (90 cases and 89 controls) were infected with H pylori as determined by enzyme linked immunosorbent assay (ELISA) in serum and 63 (13 cases and 50 controls) were uninfected. Serum samples from cases and controls, obtained a mean of 14.2 years before diagnosis of cancer in the cases, were tested by ELISA for IgG antibodies against the CagA gene product of H pylori. They had previously been tested for pepsinogen I. Using logistic regression analysis, risk for cancer was compared among infected persons with CagA antibodies, infected persons without CagA antibodies, and uninfected persons. Subjects infected with H pylori who had CagA antibodies were 5.8-fold more likely than uninfected subjects to develop gastric cancer (95% confidence interval (95% CI) = 2.6-13.0). This was true for both intestinal (odds ratio (OR) 5.1, 95% CI = 2.1-12.2) and diffuse type (OR 10.1, 95% CI = 2.2-47.4) cancers. By contrast, H pylori infected subjects without CagA antibodies were only slightly, and not significantly, at increased risk for cancer (OR 2.2, 95% CI = 0.9-5.4) and any possible association was restricted to diffuse type carcinoma (OR 9.0, 95% CI = 1.2-65.8). Pepsinogen 1 < 50 ng/ml significantly increased risk for both cancer types in H pylori infected persons and lessened the magnitude of association between CagA and cancer. Educational attainment, cigarette smoking, and ABO blood group were not associated with malignancy. When compared with uninfected subjects, persons infected with CagA positive H pylori are at considerably increased risk of gastric cancer. CagA negative H pylori are less strongly linked to malignancy and may only be associated with diffuse type disease.
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                Author and article information

                Contributors
                Journal
                World J Gastroenterol
                World J. Gastroenterol
                WJG
                World Journal of Gastroenterology
                Baishideng Publishing Group Inc
                1007-9327
                2219-2840
                7 September 2019
                7 September 2019
                : 25
                : 33
                : 4870-4884
                Affiliations
                Institute of Microbiology and Immunology, Faculty of Medicine, University of Ljubljana, Ljubljana 1000, Slovenia
                Institute of Microbiology and Immunology, Faculty of Medicine, University of Ljubljana, Ljubljana 1000, Slovenia
                Institute of Microbiology and Immunology, Faculty of Medicine, University of Ljubljana, Ljubljana 1000, Slovenia
                Department of Gastroenterology, Hepatology and Nutrition, University Children’s Hospital, Faculty of Medicine, University of Ljubljana, Ljubljana 1000, Slovenia. matjaz.homan@ 123456guest.arnes.si
                Author notes

                Author contributions: All authors contributed equally to this paper, with conception and design of the study, literature review and analysis, drafting and critical revision and editing, and final approval of the final version.

                Corresponding author: Matjaž Homan, MD, PhD, Assistant Professor, Department of Gastroenterology, Hepatology and Nutrition, University Children’s Hospital, Faculty of Medicine, University of Ljubljana, Bohoričeva 20, Ljubljana 1000, Slovenia. matjaz.homan@ 123456guest.arnes.si

                Telephone: +386-1-5229276 Fax: +386-1-5229350

                Article
                jWJG.v25.i33.pg4870
                10.3748/wjg.v25.i33.4870
                6737321
                31543679
                b49b57c1-e8b1-41bc-bc6c-8f5ead45dbda
                ©The Author(s) 2019. Published by Baishideng Publishing Group Inc. All rights reserved.

                This article is an open-access article which was selected by an in-house editor and fully peer-reviewed by external reviewers. It is distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial.

                History
                : 18 May 2019
                : 29 July 2019
                : 7 August 2019
                Categories
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                helicobacter pylori,virulence genes,disease association,children,adults,outer membrane proteins,bacterial toxins

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