BACKGROUND & AIMS: Helicobacter pylori-induced gastric carcinogenesis has been linked to the microbial oncoprotein cytotoxin-associated gene A (CagA). Spermine oxidase (SMO) metabolizes the polyamine spermine into spermidine and generates H(2)O(2), which causes apoptosis and DNA damage. We determined if pathogenic effects of CagA are attributable to SMO. METHODS: Levels of SMO, apoptosis, and DNA damage (8-oxoguanosine) were measured in gastric epithelial cell lines infected with cagA(+) or cagA(-)H pylori strains, or transfected with a CagA expression plasmid, in the absence or presence of SMO small interfering RNA, or an SMO inhibitor. The role of CagA in induction of SMO and DNA damage was assessed in H pylori-infected gastritis tissues from humans, gerbils, and both wild-type and hypergastrinemic insulin-gastrin mice, using immunohistochemistry and flow cytometry. RESULTS: cagA(+) strains or ectopic expression of CagA, but not cagA(-) strains, led to increased levels of SMO, apoptosis, and DNA damage in gastric epithelial cells, and knockdown or inhibition of SMO blocked apoptosis and DNA damage. There was increased SMO expression, apoptosis, and DNA damage in gastric tissues from humans infected with cagA(+), but not cagA(-) strains. In gerbils and mice, DNA damage was CagA-dependent and present in cells that expressed SMO. Gastric epithelial cells with DNA damage that were negative for markers of apoptosis accounted for 42%-69% of cells in gerbils and insulin-gastrin mice with dysplasia and carcinoma. CONCLUSIONS: By inducing SMO, H pylori CagA generates cells with oxidative DNA damage, and a subpopulation of these cells are resistant to apoptosis and thus at high risk for malignant transformation.
BACKGROUND & AIMS:Helicobacter pylori-induced gastric carcinogenesis has been linked to the microbial oncoprotein cytotoxin-associated gene A (CagA). Spermine oxidase (SMO) metabolizes the polyamine spermine into spermidine and generates H(2)O(2), which causes apoptosis and DNA damage. We determined if pathogenic effects of CagA are attributable to SMO. METHODS: Levels of SMO, apoptosis, and DNA damage (8-oxoguanosine) were measured in gastric epithelial cell lines infected with cagA(+) or cagA(-)H pylori strains, or transfected with a CagAexpression plasmid, in the absence or presence of SMO small interfering RNA, or an SMO inhibitor. The role of CagA in induction of SMO and DNA damage was assessed in H pylori-infected gastritis tissues from humans, gerbils, and both wild-type and hypergastrinemic insulin-gastrinmice, using immunohistochemistry and flow cytometry. RESULTS:cagA(+) strains or ectopic expression of CagA, but not cagA(-) strains, led to increased levels of SMO, apoptosis, and DNA damage in gastric epithelial cells, and knockdown or inhibition of SMO blocked apoptosis and DNA damage. There was increased SMOexpression, apoptosis, and DNA damage in gastric tissues from humans infected with cagA(+), but not cagA(-) strains. In gerbils and mice, DNA damage was CagA-dependent and present in cells that expressed SMO. Gastric epithelial cells with DNA damage that were negative for markers of apoptosis accounted for 42%-69% of cells in gerbils and insulin-gastrinmice with dysplasia and carcinoma. CONCLUSIONS: By inducing SMO, H pyloriCagA generates cells with oxidative DNA damage, and a subpopulation of these cells are resistant to apoptosis and thus at high risk for malignant transformation.
Authors: R M Peek; M J Blaser; D J Mays; M H Forsyth; T L Cover; S Y Song; U Krishna; J A Pietenpol Journal: Cancer Res Date: 1999-12-15 Impact factor: 12.701
Authors: Michael Quante; Shui Ping Tu; Hiroyuki Tomita; Tamas Gonda; Sophie S W Wang; Shigeo Takashi; Gwang Ho Baik; Wataru Shibata; Bethany Diprete; Kelly S Betz; Richard Friedman; Andrea Varro; Benjamin Tycko; Timothy C Wang Journal: Cancer Cell Date: 2011-02-15 Impact factor: 31.743
Authors: Rupesh Chaturvedi; Yulan Cheng; Mohammad Asim; Françoise I Bussière; Hangxiu Xu; Alain P Gobert; Amy Hacker; Robert A Casero; Keith T Wilson Journal: J Biol Chem Date: 2004-07-09 Impact factor: 5.157
Authors: Marcelo S P Ladeira; Maria A M Rodrigues; Daisy M F Salvadori; Pedro Padulla Neto; Pedro Achilles; Mauro M Lerco; Paulo A Rodrigues; Irio Gonçalves; Dulciene M M Queiroz; Dértia V Freire-Maia Journal: Environ Mol Mutagen Date: 2004 Impact factor: 3.216
Authors: Manuel R Amieva; Roger Vogelmann; Antonello Covacci; Lucy S Tompkins; W James Nelson; Stanley Falkow Journal: Science Date: 2003-05-30 Impact factor: 47.728
Authors: J Parsonnet; G D Friedman; D P Vandersteen; Y Chang; J H Vogelman; N Orentreich; R K Sibley Journal: N Engl J Med Date: 1991-10-17 Impact factor: 91.245
Authors: Johanna C Sierra; Giovanni Suarez; M Blanca Piazuelo; Paula B Luis; Dara R Baker; Judith Romero-Gallo; Daniel P Barry; Claus Schneider; Douglas R Morgan; Richard M Peek; Alain P Gobert; Keith T Wilson Journal: Proc Natl Acad Sci U S A Date: 2019-02-25 Impact factor: 11.205
Authors: Shenika V Poindexter; Vishruth K Reddy; Mukul K Mittal; Amanda M Williams; M Kay Washington; Elizabeth Harris; Amanda Mah; Scott W Hiebert; Kshipra Singh; Rupesh Chaturvedi; Keith T Wilson; P Kay Lund; Christopher S Williams Journal: Am J Physiol Gastrointest Liver Physiol Date: 2015-01-08 Impact factor: 4.052
Authors: Jennifer M Noto; Jennifer A Gaddy; Josephine Y Lee; M Blanca Piazuelo; David B Friedman; Daniel C Colvin; Judith Romero-Gallo; Giovanni Suarez; John Loh; James C Slaughter; Shumin Tan; Douglas R Morgan; Keith T Wilson; Luis E Bravo; Pelayo Correa; Timothy L Cover; Manuel R Amieva; Richard M Peek Journal: J Clin Invest Date: 2012-12-21 Impact factor: 14.808
Authors: Caitlyn W Barrett; Wei Ning; Xi Chen; Jesse Joshua Smith; Mary K Washington; Kristina E Hill; Lori A Coburn; Richard M Peek; Rupesh Chaturvedi; Keith T Wilson; Raymond F Burk; Christopher S Williams Journal: Cancer Res Date: 2012-12-05 Impact factor: 12.701
Authors: Jennifer M Noto; Kristie L Rose; Amanda J Hachey; Alberto G Delgado; Judith Romero-Gallo; Lydia E Wroblewski; Barbara G Schneider; Shailja C Shah; Timothy L Cover; Keith T Wilson; Dawn A Israel; Juan Carlos Roa; Kevin L Schey; Yana Zavros; M Blanca Piazuelo; Richard M Peek Journal: Mol Cell Proteomics Date: 2018-11-19 Impact factor: 5.911