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Helicobacter pylori pathogen regulates p14ARF tumor suppressor and autophagy in gastric epithelial cells (CROSBI ID 257095)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Horvat, Anđela ; Noto, Jennifer M ; Ramatchandirin, Balamurugan ; Zaika, Elena ; Palrasu, Manikandan ; Wei, Jinxiong ; Schneider, Barbara G ; El-Rifai, Wael ; Peek Jr, Richard M ; Zaika, Alexander I Helicobacter pylori pathogen regulates p14ARF tumor suppressor and autophagy in gastric epithelial cells // Oncogene, 37 (2018), 37; 5054-5065

Podaci o odgovornosti

Horvat, Anđela ; Noto, Jennifer M ; Ramatchandirin, Balamurugan ; Zaika, Elena ; Palrasu, Manikandan ; Wei, Jinxiong ; Schneider, Barbara G ; El-Rifai, Wael ; Peek Jr, Richard M ; Zaika, Alexander I

engleski

Helicobacter pylori pathogen regulates p14ARF tumor suppressor and autophagy in gastric epithelial cells

Infection with Helicobacter pylori is one of the strongest risk factors for development of gastric cancer. Although these bacteria infect approximately half of the world's population, only a small fraction of infected individuals develops gastric malignancies. Interactions between host and bacterial virulence factors are complex and interrelated, making it difficult to elucidate specific processes associated with H. pylori-induced tumorigenesis. In this study, we found that H. pylori inhibits p14ARF tumor suppressor by inducing its degradation. This effect was found to be strain-specific. Downregulation of p14ARF induced by H. pylori leads to inhibition of autophagy in a p53-independent manner in infected cells. We identified TRIP12 protein as E3 ubiquitin ligase that is upregulated by H. pylori, inducing ubiquitination and subsequent degradation of p14ARF protein. Using isogenic H. pylori mutants, we found that induction of TRIP12 is mediated by bacterial virulence factor CagA. Increased expression of TRIP12 protein was found in infected gastric epithelial cells in vitro and human gastric mucosa of H. pylori-infected individuals. In conclusion, our data demonstrate a new mechanism of ARF inhibition that may affect host-bacteria interactions and facilitate tumorigenic transformation in the stomach.

ARF ; TRIP12/ULF ; H. pylori ; gastric cancer

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Podaci o izdanju

37 (37)

2018.

5054-5065

objavljeno

0950-9232

1476-5594

Povezanost rada

Povezane osobe



Biologija, Temeljne medicinske znanosti

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