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锌指转录因子191是早期胚胎发育和细胞增殖所必需的。

The zinc finger transcription factor 191 is required for early embryonic development and cell proliferation.

作者信息

Li Jianzhong, Chen Xia, Yang Hua, Wang Shuiliang, Guo Baoyu, Yu Long, Wang Zhugang, Fu Jiliang

机构信息

Department of Biochemical Pharmacy, Second Military Medical University, Shanghai, China.

出版信息

Exp Cell Res. 2006 Dec 10;312(20):3990-8. doi: 10.1016/j.yexcr.2006.08.020. Epub 2006 Aug 30.

Abstract

Human zinc finger protein 191 (ZNF191/ZNF24) was cloned and characterized as a SCAN family member, which shows 94% identity to its mouse homologue zinc finger protein 191 (Zfp191). ZNF191 can specifically interact with an intronic polymorphic TCAT repeat (HUMTH01) in the tyrosine hydroxylase (TH) gene. Allelic variations of HUMTH01 have been stated to have a quantitative silencing effect on TH gene expression and to correlate with quantitative and qualitative changes in the binding by ZNF191. Zfp191 is widely expressed during embryonic development and in multiple tissues and organs in adult. To investigate the functions of Zfp191 in vivo, we have used homologous recombination to generate mice that are deficient in Zfp191. Heterozygous Zfp191(+/-) mice are normal and fertile. Homozygous Zfp191(-/-) embryos are severely retarded in development and die at approximately 7.5 days post-fertilization. Unexpectedly, in Zfp191(-/-) and Zfp191(+/-) embryos, TH gene expression is not affected. Blastocyst outgrowth experiments and the RNA interference-mediated knockdown of ZNF191 in cultured cells revealed an essential role for Zfp191 in cell proliferation. In further agreement with this function, no viable Zfp191(-/-) cell lines were obtained by derivation of embryonic stem (ES) cells from blastocysts of Zfp191(+/-) intercrosses or by forced homogenotization of heterozygous ES cells at high concentrations of G418. These data show that Zfp191 is indispensable for early embryonic development and cell proliferation.

摘要

人类锌指蛋白191(ZNF191/ZNF24)被克隆并鉴定为SCAN家族成员,它与其小鼠同源物锌指蛋白191(Zfp191)具有94%的同一性。ZNF191可特异性地与酪氨酸羟化酶(TH)基因内含子中的多态性TCAT重复序列(HUMTH01)相互作用。据报道,HUMTH01的等位基因变异对TH基因表达具有定量沉默作用,并与ZNF191结合的定量和定性变化相关。Zfp191在胚胎发育过程中以及成年动物的多个组织和器官中广泛表达。为了研究Zfp191在体内的功能,我们利用同源重组技术培育出了Zfp191基因缺失的小鼠。杂合子Zfp191(+/-)小鼠正常且可育。纯合子Zfp191(-/-)胚胎发育严重迟缓,在受精后约7.5天死亡。出乎意料的是,在Zfp191(-/-)和Zfp191(+/-)胚胎中,TH基因表达未受影响。囊胚生长实验以及在培养细胞中通过RNA干扰介导的ZNF191敲低实验揭示了Zfp191在细胞增殖中的重要作用。与此功能进一步相符的是,通过从Zfp191(+/-)杂交的囊胚中获取胚胎干细胞,或在高浓度G418条件下对杂合胚胎干细胞进行强制纯合化,均未获得存活的Zfp191(-/-)细胞系。这些数据表明,Zfp191对于早期胚胎发育和细胞增殖是不可或缺的。

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