Loss of epigenetic regulation disrupts lineage integrity, reactivates multipotency and promotes breast cancer

表观遗传学 生物 癌变 乳腺癌 癌症研究 清脆的 谱系(遗传) 表观遗传学 体细胞 癌症 DNA甲基化 基因 遗传学 基因表达
作者
Ellen Langille,Khalid N. Al-Zahrani,Zhibo Ma,Ahmad Kamran Malik,Sampath K. Loganathan,Dan Trcka,Jeff C. Liu,Katelyn. J. Kozma,Ricky Tsai,Katie Teng,Roderic Espín,Seda Barutcu,Thomas Nguyen,Rod Bremner,Hartland W. Jackson,Erik Knudsen,Gary D. Bader,Sean E. Egan,Miguel Angel Pujana,Jeff Wrana,Geoffrey M. Wahl,Daniel Schramek
出处
期刊:bioRxiv 被引量:1
标识
DOI:10.1101/2021.10.22.465428
摘要

Abstract Systematically investigating the scores of genes mutated in cancer and discerning real drivers from inconsequential bystanders is a prerequisite for Precision Medicine, but remains challenging. Here, we developed a somatic CRISPR/Cas9 mutagenesis screen to study 215 recurrent ‘long-tail’ breast cancer genes, which revealed epigenetic regulation as major tumor suppressive mechanism. We report that core or accessory components of the COMPASS histone methylase complex including KMT2C , KDM6A , BAP1 and ASXL2 (“EpiDrivers”) cooperate with PIK3CA H1047R to transform mouse and human breast epithelial cells. Mechanistically, we find that Cre-mediated activation of PIK3CA H1047R elicited an aberrant alveolar lactation program in luminal cells, which was exacerbated upon loss of EpiDrivers. Remarkably, EpiDriver loss in basal cells also triggered an alveolar-like lineage conversion and accelerated formation of luminal-like tumors, suggesting a basal origin for luminal tumors. As EpiDrivers are mutated in 39% of human breast cancers, lineage infidelity and lactation mimicry may significantly contribute to early steps of breast cancer progression. Statement of significance Infrequently mutated genes comprise most of the mutational burden in breast tumors but are poorly understood. In-vivo CRISPR screening identified functional tumor suppressors that converged on epigenetic regulation. Loss of epigenetic regulators accelerated tumorigenesis and revealed lineage infidelity and aberrant expression of lactation genes as potential early events in tumorigenesis.

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