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锌指蛋白819(Zfp819)是一种新型的KRAB锌指蛋白,它与KAP1相互作用,并在维持小鼠胚胎干细胞的基因组完整性方面发挥作用。

Zfp819, a novel KRAB-zinc finger protein, interacts with KAP1 and functions in genomic integrity maintenance of mouse embryonic stem cells.

作者信息

Tan Xiaoying, Xu Xingbo, Elkenani Manar, Smorag Lukasz, Zechner Ulrich, Nolte Jessica, Engel Wolfgang, Pantakani D V Krishna

机构信息

Institute of Human Genetics, University of Goettingen, Heinrich-Dueker-Weg 12, 37073 Goettingen, Germany.

出版信息

Stem Cell Res. 2013 Nov;11(3):1045-59. doi: 10.1016/j.scr.2013.07.006. Epub 2013 Jul 30.

Abstract

Pluripotency is maintained by both known and unknown transcriptional regulatory networks. In the present study, we have identified Zfp819, a KRAB-zinc finger protein, as a novel pluripotency-related factor and characterized its role in pluripotent stem cells. We show that Zfp819 is expressed highly in various types of pluripotent stem cells but not in their differentiated counterparts. We identified the presence of non-canonical nuclear localization signals in particular zinc finger motifs and identified them as responsible for the nuclear localization of Zfp819. Analysis of the Zfp819 promoter region revealed the presence of a transcriptionally active chromatin signature. Moreover, we confirmed the binding of pluripotency-related factors, Oct4, Sox2, and Nanog to the distal promoter region of Zfp819, indicating that the expression of this gene is regulated by a pluripotency transcription factor network. We found that the expression of endogenous retroviral elements (ERVs) such as Intracisternal A Particle (IAP) retrotransposons, Long Interspersed Nuclear Elements (LINE1), and Short Interspersed Nuclear Elements (SINE B1) is significantly upregulated in Zfp819-knockdown (Zfp819_KD) cells. In line with the activation of ERVs, we observed the occurrence of spontaneous DNA damage in Zfp819_KD cells. Furthermore, we tested whether Zfp819 can interact with KAP1, a KRAB-associated protein with a transcriptional repression function, and found the interaction between these two proteins in both in vitro and in vivo experiments. The challenging of Zfp819_KD cells with DNA damaging agent revealed that these cells are inefficient in repairing the damaged DNA, as cells showed presence of γH2A.X foci for a prolonged time. Collectively, our study identified Zfp819 as a novel pluripotency-related factor and unveiled its function in genomic integrity maintenance mechanisms of mouse embryonic stem cells.

摘要

多能性由已知和未知的转录调控网络维持。在本研究中,我们鉴定出一种KRAB锌指蛋白Zfp819作为一种新型的多能性相关因子,并对其在多能干细胞中的作用进行了表征。我们发现Zfp819在各种类型的多能干细胞中高表达,但在其分化后的对应细胞中不表达。我们在特定的锌指基序中鉴定出非经典核定位信号的存在,并确定它们负责Zfp819的核定位。对Zfp819启动子区域的分析揭示了转录活性染色质特征的存在。此外,我们证实了多能性相关因子Oct4、Sox2和Nanog与Zfp819远端启动子区域的结合,表明该基因的表达受多能性转录因子网络调控。我们发现,在Zfp819敲低(Zfp819_KD)细胞中,内源性逆转录病毒元件(ERVs)如A颗粒内顺反子(IAP)逆转座子、长散在核元件(LINE1)和短散在核元件(SINE B1)的表达显著上调。与ERVs的激活一致,我们在Zfp819_KD细胞中观察到自发DNA损伤的发生。此外,我们测试了Zfp819是否能与具有转录抑制功能的KRAB相关蛋白KAP1相互作用,并在体外和体内实验中均发现了这两种蛋白之间的相互作用。用DNA损伤剂处理Zfp819_KD细胞发现,这些细胞在修复受损DNA方面效率低下,因为细胞长时间存在γH2A.X焦点。总的来说,我们的研究鉴定出Zfp819作为一种新型的多能性相关因子,并揭示了其在小鼠胚胎干细胞基因组完整性维持机制中的功能。

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