Integrated loss- and gain-of-function screens define a core network governing human embryonic stem cell behavior

综合功能丧失和获得筛选定义了控制人类胚胎干细胞行为的核心网络

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作者:Kamila Naxerova, Bruno Di Stefano, Jessica L Makofske, Emma V Watson, Marit A de Kort, Timothy D Martin, Mohammed Dezfulian, Dominik Ricken, Eric C Wooten, Mitzi I Kuroda, Konrad Hochedlinger, Stephen J Elledge

Abstract

Understanding the genetic control of human embryonic stem cell function is foundational for developmental biology and regenerative medicine. Here we describe an integrated genome-scale loss- and gain-of-function screening approach to identify genetic networks governing embryonic stem cell proliferation and differentiation into the three germ layers. We identified a deep link between pluripotency maintenance and survival by showing that genetic alterations that cause pluripotency dissolution simultaneously increase apoptosis resistance. We discovered that the chromatin-modifying complex SAGA and in particular its subunit TADA2B are central regulators of pluripotency, survival, growth, and lineage specification. Joint analysis of all screens revealed that genetic alterations that broadly inhibit differentiation across multiple germ layers drive proliferation and survival under pluripotency-maintaining conditions and coincide with known cancer drivers. Our results show the power of integrated multilayer genetic screening for the robust mapping of complex genetic networks.

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