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内源性逆转录病毒的表达受多能性标记 Rex1/Zfp42 的负调控。

Expression of endogenous retroviruses is negatively regulated by the pluripotency marker Rex1/Zfp42.

机构信息

Regenerative Medicine Programme, IIS Aragón, Instituto Aragonés de Ciencias de Salud, Zaragoza, Avda. Gómez Laguna, 50009 Zaragoza, Spain.

出版信息

Nucleic Acids Res. 2012 Oct;40(18):8993-9007. doi: 10.1093/nar/gks686. Epub 2012 Jul 25.

Abstract

Rex1/Zfp42 is a Yy1-related zinc-finger protein whose expression is frequently used to identify pluripotent stem cells. We show that depletion of Rex1 levels notably affected self-renewal of mouse embryonic stem (ES) cells in clonal assays, in the absence of evident differences in expression of marker genes for pluripotency or differentiation. By contrast, marked differences in expression of several endogenous retroviral elements (ERVs) were evident upon Rex1 depletion. We demonstrate association of REX1 to specific elements in chromatin-immunoprecipitation assays, most strongly to muERV-L and to a lower extent to IAP and musD elements. Rex1 regulates muERV-L expression in vivo, as we show altered levels upon transient gain-and-loss of Rex1 function in pre-implantation embryos. We also find REX1 can associate with the lysine-demethylase LSD1/KDM1A, suggesting they act in concert. Similar to REX1 binding to retrotransposable elements (REs) in ES cells, we also detected binding of the REX1 related proteins YY1 and YY2 to REs, although the binding preferences of the two proteins were slightly different. Altogether, we show that Rex1 regulates ERV expression in mouse ES cells and during pre-implantation development and suggest that Rex1 and its relatives have evolved as regulators of endogenous retroviral transcription.

摘要

Rex1/Zfp42 是一种与 Yy1 相关的锌指蛋白,其表达常用于鉴定多能干细胞。我们发现 Rex1 水平的耗竭显著影响了小鼠胚胎干细胞(ES 细胞)在克隆测定中的自我更新,而多能性或分化标记基因的表达没有明显差异。相比之下,在 Rex1 耗竭后,几种内源性逆转录病毒元件(ERVs)的表达差异明显。我们通过染色质免疫沉淀实验证明了 REX1 与特定染色质元件的结合,与 muERV-L 的结合最强,与 IAP 和 musD 元件的结合较弱。Rex1 调节 muERV-L 在体内的表达,正如我们在胚胎植入前短暂获得和丧失 Rex1 功能时显示的那样,其水平发生改变。我们还发现 REX1 可以与赖氨酸去甲基化酶 LSD1/KDM1A 结合,表明它们协同作用。类似于 Rex1 与 ES 细胞中的转座元件(REs)结合,我们还检测到与 Rex1 相关的蛋白质 YY1 和 YY2 与 REs 的结合,尽管这两种蛋白质的结合偏好略有不同。总之,我们表明 Rex1 调节小鼠 ES 细胞和胚胎植入前发育过程中的 ERV 表达,并表明 Rex1 及其同源物已进化为内源性逆转录病毒转录的调节剂。

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