Regulatory crosstalk between lineage-survival oncogenesKLF5, GATA4andGATA6cooperatively promotes gastric cancer development

关贸总协定6 关贸总协定 染色质免疫沉淀 生物 转录因子 发起人 基因 遗传学 癌症研究 染色质 分子生物学 基因表达
作者
Na‐Yu Chia,Niantao Deng,Kakoli Das,Dachuan Huang,Longyu Hu,Yansong Zhu,Kiat Hon Lim,Ming‐Hui Lee,Jeanie Wu,Xin Xiu Sam,Gek San Tan,Wei Keat Wan,Willie Yu,Anna Gan,Angie Lay Keng Tan,Su-Ting Tay,Khee Chee Soo,Wai Keong Wong,Lourdes Trinidad M Dominguez,Huck‐Hui Ng,Steve Rozen,Liang-Kee Goh,Bin-Tean Teh,Patrick Tan
出处
期刊:Gut [BMJ]
卷期号:64 (5): 707-719 被引量:152
标识
DOI:10.1136/gutjnl-2013-306596
摘要

Objective

Gastric cancer (GC) is a deadly malignancy for which new therapeutic strategies are needed. Three transcription factors, KLF5, GATA4 and GATA6, have been previously reported to exhibit genomic amplification in GC. We sought to validate these findings, investigate how these factors function to promote GC, and identify potential treatment strategies for GCs harbouring these amplifications.

Design

KLF5, GATA4 and GATA6 copy number and gene expression was examined in multiple GC cohorts. Chromatin immunoprecipitation with DNA sequencing was used to identify KLF5/GATA4/GATA6 genomic binding sites in GC cell lines, and integrated with transcriptomics to highlight direct target genes. Phenotypical assays were conducted to assess the function of these factors in GC cell lines and xenografts in nude mice.

Results

KLF5, GATA4 and GATA6 amplifications were confirmed in independent GC cohorts. Although factor amplifications occurred in distinct sets of GCs, they exhibited significant mRNA coexpression in primary GCs, consistent with KLF5/GATA4/GATA6 cross-regulation. Chromatin immunoprecipitation with DNA sequencing revealed a large number of genomic sites co-occupied by KLF5 and GATA4/GATA6, primarily located at gene promoters and exhibiting higher binding strengths. KLF5 physically interacted with GATA factors, supporting KLF5/GATA4/GATA6 cooperative regulation on co-occupied genes. Depletion and overexpression of these factors, singly or in combination, reduced and promoted cancer proliferation, respectively, in vitro and in vivo. Among the KLF5/GATA4/GATA6 direct target genes relevant for cancer development, one target gene, HNF4α, was also required for GC proliferation and could be targeted by the antidiabetic drug metformin, revealing a therapeutic opportunity for KLF5/GATA4/GATA6 amplified GCs.

Conclusions

KLF5/GATA4/GATA6 may promote GC development by engaging in mutual crosstalk, collaborating to maintain a pro-oncogenic transcriptional regulatory network in GC cells.
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