A 16q22.1 variant confers susceptibility to colorectal cancer as a distal regulator of ZFP90

Author:

Yu Chen-Yang,Han Ji-Xuan,Zhang Junfang,Jiang Penglei,Shen Chaoqin,Guo Fangfang,Tang Jiayin,Yan Tingting,Tian Xianglong,Zhu Xiaoqiang,Ma Dan,Hu Ye,Xie Yuanhong,Du Wan,Zhong Ming,Chen Jinxian,Liu Qiang,Sun Danfeng,Chen Yingxuan,Zou Weiping,Hong Jie,Chen Haoyan,Fang Jing-Yuan

Abstract

Abstract Genome-wide association studies (GWASs) implicate 16q22.1 locus in risk for colorectal cancer (CRC). However, the underlying oncogenic mechanisms remain unknown. Here, through comprehensive filtration, we prioritized rs7198799, a common SNP in the second intron of the CDH1, as the putative causal variant. In addition, we found an association of CRC-risk allele C of rs7198799 with elevated transcript level of biological plausible candidate gene ZFP90 via expression quantitative trait loci analysis. Mechanistically, causal variant rs7198799 resides in an enhancer element and remotely regulate ZFP90 expression by targeting the transcription factor NFATC2. Remarkably, CRISPR/Cas9-guided single-nucleotide editing demonstrated the direct effect of rs7198799 on ZFP90 expression and CRC cellular malignant phenotype. Furthermore, ZFP90 affects several oncogenic pathways, including BMP4, and promotes carcinogenesis in patients and in animal models with ZFP90 specific genetic manipulation. Taken together, these findings reveal a risk SNP-mediated long-range regulation on the NFATC2-ZFP90-BMP4 pathway underlying the initiation of CRC.

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Genetics,Molecular Biology

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