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A network of epigenetic regulators guides developmental haematopoiesis in vivo

机译:表观遗传调节剂网络指导体内发育性造血

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The initiation of cellular programs is orchestrated by key transcription factors and chromatin regulators that activate or inhibit target gene expression. To generate a compendium of chromatin factors that establish the epigenetic code during developmental haematopoiesis, a large-scale reverse genetic screen was conducted targeting orthologues of 425 human chromatin factors in zebrafish. A set of chromatin regulators was identified that target different stages of primitive and definitive blood formation, including factors not previously implicated in haematopoiesis. We identified 15 factors that regulate development of primitive erythroid progenitors and 29 factors that regulate development of definitive haematopoietic stem and progenitor cells. These chromatin factors are associated with SWI/SNF and ISWI chromatin remodelling, SET1 methyltransferase, CBP-p300-HBOl-NuA4 acetyltransferase, HDAC-NuRD deacetylase, and Polycomb repressive complexes. Our work provides a comprehensive view of how specific chromatin factors and their associated complexes play a major role in the establishment of haematopoietic ceils in vivo.
机译:细胞程序的启动由激活或抑制靶基因表达的关键转录因子和染色质调节剂共同调控。为了生成在发育造血过程中建立表观遗传密码的染色质因子纲要,针对斑马鱼中425种人类染色质因子的直向同源物进行了大规模的反向遗传筛选。确定了一套针对原始和确定性血液形成的不同阶段的染色质调节剂,包括以前与造血无关的因素。我们确定了15个调节原始红系祖细胞发育的因素和29个调节定型造血干细胞和祖细胞发育的因素。这些染色质因子与SWI / SNF和ISWI染色质重塑,SET1甲基转移酶,CBP-p300-HBO1-NuA4乙酰基转移酶,HDAC-NuRD脱乙酰基酶和多梳抑制复合物相关。我们的工作提供了关于特定染色质因子及其相关复合物如何在体内建立造血细胞中起主要作用的全面视图。

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