Literature DB >> 23112162

CDX1 confers intestinal phenotype on gastric epithelial cells via induction of stemness-associated reprogramming factors SALL4 and KLF5.

Yumiko Fujii1, Kyoko Yoshihashi, Hidekazu Suzuki, Shuichi Tsutsumi, Hiroyuki Mutoh, Shin Maeda, Yukinori Yamagata, Yasuyuki Seto, Hiroyuki Aburatani, Masanori Hatakeyama.   

Abstract

Intestinal metaplasia of the stomach, a mucosal change characterized by the conversion of gastric epithelium into an intestinal phenotype, is a precancerous lesion from which intestinal-type gastric adenocarcinoma arises. Chronic infection with Helicobacter pylori is a major cause of gastric intestinal metaplasia, and aberrant induction by H. pylori of the intestine-specific caudal-related homeobox (CDX) transcription factors, CDX1 and CDX2, plays a key role in this metaplastic change. As such, a critical issue arises as to how these factors govern the cell- and tissue-type switching. In this study, we explored genes directly activated by CDX1 in gastric epithelial cells and identified stemness-associated reprogramming factors SALL4 and KLF5. Indeed, SALL4 and KLF5 were aberrantly expressed in the CDX1(+) intestinal metaplasia of the stomach in both humans and mice. In cultured gastric epithelial cells, sustained expression of CDX1 gave rise to the induction of early intestinal-stemness markers, followed by the expression of intestinal-differentiation markers. Furthermore, the induction of these markers was suppressed by inhibiting either SALL4 or KLF5 expression, indicating that CDX1-induced SALL4 and KLF5 converted gastric epithelial cells into tissue stem-like progenitor cells, which then transdifferentiated into intestinal epithelial cells. Our study places the stemness-related reprogramming factors as critical components of CDX1-directed transcriptional circuitries that promote intestinal metaplasia. Requirement of a transit through dedifferentiated stem/progenitor-like cells, which share properties in common with cancer stem cells, may underlie predisposition of intestinal metaplasia to neoplastic transformation.

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Year:  2012        PMID: 23112162      PMCID: PMC3528493          DOI: 10.1073/pnas.1208651109

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  33 in total

Review 1.  The evolution of transcriptional regulation in eukaryotes.

Authors:  Gregory A Wray; Matthew W Hahn; Ehab Abouheif; James P Balhoff; Margaret Pizer; Matthew V Rockman; Laura A Romano
Journal:  Mol Biol Evol       Date:  2003-05-30       Impact factor: 16.240

2.  Transgenic Cdx2 induces endogenous Cdx1 in intestinal metaplasia of Cdx2-transgenic mouse stomach.

Authors:  Hiroyuki Mutoh; Hiroko Hayakawa; Hirotsugu Sakamoto; Miho Sashikawa; Kentaro Sugano
Journal:  FEBS J       Date:  2009-09-02       Impact factor: 5.542

Review 3.  Gastrointestinal stem cells in self-renewal and cancer.

Authors:  S Adelia Lin; Nick Barker
Journal:  J Gastroenterol       Date:  2011-07-05       Impact factor: 7.527

Review 4.  A human model of gastric carcinogenesis.

Authors:  P Correa
Journal:  Cancer Res       Date:  1988-07-01       Impact factor: 12.701

5.  TCF4 and CDX2, major transcription factors for intestinal function, converge on the same cis-regulatory regions.

Authors:  Michael P Verzi; Pantelis Hatzis; Rita Sulahian; Juliet Philips; Jurian Schuijers; Hyunjin Shin; Ellen Freed; John P Lynch; Duyen T Dang; Myles Brown; Hans Clevers; X Shirley Liu; Ramesh A Shivdasani
Journal:  Proc Natl Acad Sci U S A       Date:  2010-08-09       Impact factor: 11.205

6.  Cdx1 autoregulation is governed by a novel Cdx1-LEF1 transcription complex.

Authors:  Mélanie Béland; Nicolas Pilon; Martin Houle; Karen Oh; Jean-René Sylvestre; Panagiotis Prinos; David Lohnes
Journal:  Mol Cell Biol       Date:  2004-06       Impact factor: 4.272

Review 7.  The role of Cdx proteins in intestinal development and cancer.

Authors:  Rong-Jun Guo; Eun Ran Suh; John P Lynch
Journal:  Cancer Biol Ther       Date:  2004-07-09       Impact factor: 4.742

Review 8.  Barrett's oesophagus and oesophageal adenocarcinoma: time for a new synthesis.

Authors:  Brian J Reid; Xiaohong Li; Patricia C Galipeau; Thomas L Vaughan
Journal:  Nat Rev Cancer       Date:  2010-02       Impact factor: 60.716

9.  Cdx1 induced intestinal metaplasia in the transgenic mouse stomach: comparative study with Cdx2 transgenic mice.

Authors:  H Mutoh; S Sakurai; K Satoh; H Osawa; Y Hakamata; T Takeuchi; K Sugano
Journal:  Gut       Date:  2004-10       Impact factor: 23.059

10.  Capturing and profiling adult hair follicle stem cells.

Authors:  Rebecca J Morris; Yaping Liu; Lee Marles; Zaixin Yang; Carol Trempus; Shulan Li; Jamie S Lin; Janet A Sawicki; George Cotsarelis
Journal:  Nat Biotechnol       Date:  2004-03-14       Impact factor: 54.908

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  53 in total

1.  A pivotal role of Krüppel-like factor 5 in regulation of cancer stem-like cells in hepatocellular carcinoma.

Authors:  Osamu Maehara; Fumiyuki Sato; Mitsuteru Natsuizaka; Ayaka Asano; Yoshimasa Kubota; Jun Itoh; Seiji Tsunematsu; Katsumi Terashita; Yoko Tsukuda; Masato Nakai; Takuya Sho; Goki Suda; Kenichi Morikawa; Koji Ogawa; Makoto Chuma; Koji Nakagawa; Shunsuke Ohnishi; Yoshito Komatsu; Kelly A Whelan; Hiroshi Nakagawa; Hiroshi Takeda; Naoya Sakamoto
Journal:  Cancer Biol Ther       Date:  2015-07-15       Impact factor: 4.742

Review 2.  SP and KLF Transcription Factors in Digestive Physiology and Diseases.

Authors:  Chang-Kyung Kim; Ping He; Agnieszka B Bialkowska; Vincent W Yang
Journal:  Gastroenterology       Date:  2017-03-30       Impact factor: 22.682

Review 3.  Interaction of sonic hedgehog (SHH) pathway with cancer stem cell genes in gastric cancer.

Authors:  Ali Akbar Samadani; Haleh Akhavan-Niaki
Journal:  Med Oncol       Date:  2015-01-31       Impact factor: 3.064

4.  Gastric-to-intestinal transdifferentiation and cancer.

Authors:  Jennifer M Noto; Richard M Peek
Journal:  Proc Natl Acad Sci U S A       Date:  2012-11-26       Impact factor: 11.205

Review 5.  Concise review: dedifferentiation meets cancer development: proof of concept for epigenetic cancer.

Authors:  Yosuke Yamada; Hironori Haga; Yasuhiro Yamada
Journal:  Stem Cells Transl Med       Date:  2014-08-13       Impact factor: 6.940

6.  Targeted mobilization of Lrig1+ gastric epithelial stem cell populations by a carcinogenic Helicobacter pylori type IV secretion system.

Authors:  Lydia E Wroblewski; Eunyoung Choi; Christine Petersen; Alberto G Delgado; M Blanca Piazuelo; Judith Romero-Gallo; Tyler L Lantz; Yana Zavros; Robert J Coffey; James R Goldenring; Anne E Zemper; Richard M Peek
Journal:  Proc Natl Acad Sci U S A       Date:  2019-09-05       Impact factor: 11.205

Review 7.  Pathobiology of Helicobacter pylori-Induced Gastric Cancer.

Authors:  Manuel Amieva; Richard M Peek
Journal:  Gastroenterology       Date:  2015-09-16       Impact factor: 22.682

8.  SALL4 immunoreactivity predicts prognosis in Western hepatocellular carcinoma patients but is a rare event: a study of 236 cases.

Authors:  Ta-Chiang Liu; Neeta Vachharajani; William C Chapman; Elizabeth M Brunt
Journal:  Am J Surg Pathol       Date:  2014-07       Impact factor: 6.394

Review 9.  Gastric cancer stem cells: a novel therapeutic target.

Authors:  Shree Ram Singh
Journal:  Cancer Lett       Date:  2013-04-10       Impact factor: 8.679

10.  Chronic tamoxifen use is associated with a decreased risk of intestinal metaplasia in human gastric epithelium.

Authors:  Chang Mo Moon; Seok-Hyung Kim; Sang Kil Lee; Jiyeon Hyeon; Ja Seung Koo; Sangheun Lee; Jean S Wang; Won Jae Huh; Shradha S Khurana; Jason C Mills
Journal:  Dig Dis Sci       Date:  2013-12-25       Impact factor: 3.199

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