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RNA聚合酶II暂停在时间上协调细胞周期进程和红细胞分化。

RNA Polymerase II pausing temporally coordinates cell cycle progression and erythroid differentiation.

作者信息

Martell Danya J, Merens Hope E, Fiorini Claudia, Caulier Alexis, Ulirsch Jacob C, Ietswaart Robert, Choquet Karine, Graziadei Giovanna, Brancaleoni Valentina, Cappellini Maria Domenica, Scott Caroline, Roberts Nigel, Proven Melanie, Roy Noémi Ba, Babbs Christian, Higgs Douglas R, Sankaran Vijay G, Churchman L Stirling

机构信息

Harvard University, Department of Genetics, Boston, MA.

Division of Hematology/Oncology, Boston Children's Hospital, Harvard Medical School, Boston, MA.

出版信息

medRxiv. 2023 Mar 7:2023.03.03.23286760. doi: 10.1101/2023.03.03.23286760.

Abstract

The controlled release of promoter-proximal paused RNA polymerase II (Pol II) into productive elongation is a major step in gene regulation. However, functional analysis of Pol II pausing is difficult because factors that regulate pause release are almost all essential. In this study, we identified heterozygous loss-of-function mutations in , which encodes SPT5, in individuals with β-thalassemia unlinked to mutations. During erythropoiesis in healthy human cells, cell cycle genes were highly paused at the transition from progenitors to precursors. When the pathogenic mutations were recapitulated by editing, Pol II pause release was globally disrupted, and the transition from progenitors to precursors was delayed, marked by a transient lag in erythroid-specific gene expression and cell cycle kinetics. Despite this delay, cells terminally differentiate, and cell cycle phase distributions normalize. Therefore, hindering pause release perturbs proliferation and differentiation dynamics at a key transition during erythropoiesis, revealing a role for Pol II pausing in the temporal coordination between the cell cycle and differentiation.

摘要

启动子近端暂停的RNA聚合酶II(Pol II)向有效延伸的可控释放是基因调控中的一个主要步骤。然而,对Pol II暂停进行功能分析很困难,因为调节暂停释放的因子几乎都是必需的。在本研究中,我们在与β-地中海贫血相关的个体中鉴定出编码SPT5的基因的杂合功能丧失突变,这些个体与β-地中海贫血相关的突变无关。在健康人类细胞的红细胞生成过程中,细胞周期基因在从祖细胞向前体细胞的转变过程中高度暂停。当通过基因编辑重现致病突变时,Pol II暂停释放受到全局破坏,从祖细胞向前体细胞的转变延迟,其特征是红系特异性基因表达和细胞周期动力学出现短暂滞后。尽管有这种延迟,细胞仍会终末分化,并且细胞周期阶段分布会正常化。因此,阻碍暂停释放会在红细胞生成过程中的关键转变处扰乱增殖和分化动态,揭示了Pol II暂停在细胞周期和分化之间的时间协调中的作用。

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