An Enhancer-Driven Stem Cell–Like Program Mediated by SOX9 Blocks Intestinal Differentiation in Colorectal Cancer

硫氧化物9 LGR5型 癌症研究 细胞生物学 细胞分化 转录因子 染色质免疫沉淀 增强子 染色质 生物 干细胞 Wnt信号通路 癌症干细胞 遗传学 信号转导 基因表达 发起人 基因
作者
Xiaoyan Liang,Gina N. Duronio,Yaying Yang,Pratyusha Bala,Prajna Hebbar,Sándor Spisák,Pranshu Sahgal,Harshabad Singh,Y. Zhang,Yingtian Xie,Paloma Cejas,Henry W. Long,Adam J. Bass,Nilay S. Sethi
出处
期刊:Gastroenterology [Elsevier BV]
卷期号:162 (1): 209-222 被引量:72
标识
DOI:10.1053/j.gastro.2021.09.044
摘要

Genomic alterations that encourage stem cell activity and hinder proper maturation are central to the development of colorectal cancer (CRC). Key molecular mediators that promote these malignant properties require further elucidation to galvanize translational advances. We therefore aimed to characterize a key factor that blocks intestinal differentiation, define its transcriptional and epigenetic program, and provide preclinical evidence for therapeutic targeting in CRC.Intestinal tissue from transgenic mice and patients were analyzed by means of histopathology and immunostaining. Human CRC cells and neoplastic murine organoids were genetically manipulated for functional studies. Gene expression profiling was obtained through RNA sequencing. Histone modifications and transcription factor binding were determined with the use of chromatin immunoprecipitation sequencing.We demonstrate that SRY-box transcription factor 9 (SOX9) promotes CRC by activating a stem cell-like program that hinders intestinal differentiation. Intestinal adenomas and colorectal adenocarcinomas from mouse models and patients demonstrate ectopic and elevated expression of SOX9. Functional experiments indicate a requirement for SOX9 in human CRC cell lines and engineered neoplastic organoids. Disrupting SOX9 activity impairs primary CRC tumor growth by inducing intestinal differentiation. By binding to genome wide enhancers, SOX9 directly activates genes associated with Paneth and stem cell activity, including prominin 1 (PROM1). SOX9 up-regulates PROM1 via a Wnt-responsive intronic enhancer. A pentaspan transmembrane protein, PROM1 uses its first intracellular domain to support stem cell signaling, at least in part through SOX9, reinforcing a PROM1-SOX9 positive feedback loop.These studies establish SOX9 as a central regulator of an enhancer-driven stem cell-like program and carry important implications for developing therapeutics directed at overcoming differentiation defects in CRC.
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