McIver Skye C, Kang Yoon-A, DeVilbiss Andrew W, O'Driscoll Chelsea A, Ouellette Jonathan N, Pope Nathaniel J, Camprecios Genis, Chang Chan-Jung, Yang David, Bouhassira Eric E, Ghaffari Saghi, Bresnick Emery H
Department of Cell and Regenerative Biology, University of Wisconsin-Madison Blood Research Program, Carbone Cancer Center, University of Wisconsin School of Medicine and Public Health, Madison, WI;
Department of Developmental and Regenerative Biology, Mt. Sinai School of Medicine, New York, NY;
Blood. 2014 Oct 2;124(14):2285-97. doi: 10.1182/blood-2014-04-571083. Epub 2014 Aug 12.
Complex genetic networks control hematopoietic stem cell differentiation into progenitors that give rise to billions of erythrocytes daily. Previously, we described a role for the master regulator of erythropoiesis, GATA-1, in inducing genes encoding components of the autophagy machinery. In this context, the Forkhead transcription factor, Foxo3, amplified GATA-1-mediated transcriptional activation. To determine the scope of the GATA-1/Foxo3 cooperativity, and to develop functional insights, we analyzed the GATA-1/Foxo3-dependent transcriptome in erythroid cells. GATA-1/Foxo3 repressed expression of Exosc8, a pivotal component of the exosome complex, which mediates RNA surveillance and epigenetic regulation. Strikingly, downregulating Exosc8, or additional exosome complex components, in primary erythroid precursor cells induced erythroid cell maturation. Our results demonstrate a new mode of controlling erythropoiesis in which multiple components of the exosome complex are endogenous suppressors of the erythroid developmental program.
复杂的遗传网络控制着造血干细胞向祖细胞的分化,这些祖细胞每天可产生数十亿个红细胞。此前,我们描述了红细胞生成的主要调节因子GATA-1在诱导编码自噬机制成分的基因方面的作用。在这种情况下,叉头转录因子Foxo3增强了GATA-1介导的转录激活。为了确定GATA-1/Foxo3协同作用的范围,并获得功能方面的见解,我们分析了红系细胞中GATA-1/Foxo3依赖的转录组。GATA-1/Foxo3抑制了外泌体复合物的关键成分Exosc8的表达,该复合物介导RNA监测和表观遗传调控。引人注目的是,在原代红系前体细胞中下调Exosc8或其他外泌体复合物成分可诱导红系细胞成熟。我们的结果证明了一种控制红细胞生成的新模式,其中外泌体复合物的多个成分是红系发育程序的内源性抑制因子。