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SUMO泛素蛋白异肽酶连接酶家族成员Miz1/PIASxbeta /Siz2是TFII-I的转录辅因子。

The SUMO ubiquitin-protein isopeptide ligase family member Miz1/PIASxbeta /Siz2 is a transcriptional cofactor for TFII-I.

作者信息

Tussie-Luna Maria Isabel, Michel Bertha, Hakre Shweta, Roy Ananda L

机构信息

Department of Pathology, Programs in Immunology and Genetics, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

J Biol Chem. 2002 Nov 8;277(45):43185-93. doi: 10.1074/jbc.M207635200. Epub 2002 Aug 21.

DOI:10.1074/jbc.M207635200
PMID:12193603
Abstract

We have shown previously that a TFII-I-related protein, hMusTRD1/BEN, represses transcriptional activity of TFII-I. The repression by hMusTRD1/BEN was hypothesized to occur via a two-step competition mechanism involving a cytoplasmic shuttling factor and a nuclear cofactor required for transcriptional activation of TFII-I. Employing a two-hybrid approach with both yeast genomic and mouse cDNA libraries in parallel, we have identified the RING-like zinc finger containing Miz1/PIASxbeta/Siz2, which is a ubiquitin-protein isopeptide ligase in the SUMO pathway, as the potential nuclear cofactor that interacts with both TFII-I and hMusTRD1/BEN. Our conclusion is based on the following observations. First, the interactions are biochemically confirmed in mammalian cells where Miz1/mPIASxbeta interacts with both TFII-I and hMusTRD1/BEN when these proteins are ectopically co-expressed. Second, co-expression of a nuclear localization signal-deficient mutant of Miz1/mPIASxbeta with wild type TFII-I fails to alter the subcellular localization of the former. Finally, ectopically expressed Miz1/mPIASxbeta augments the transcriptional activity of TFII-I and relieves the repression exerted by a mutant hMusTRD1/BEN that co-localized with TFII-I in the nucleus.

摘要

我们之前已经表明,一种与TFII-I相关的蛋白质hMusTRD1/BEN可抑制TFII-I的转录活性。据推测,hMusTRD1/BEN的抑制作用是通过一种两步竞争机制发生的,该机制涉及一种细胞质穿梭因子和TFII-I转录激活所需的核辅因子。我们采用双杂交方法,同时平行使用酵母基因组文库和小鼠cDNA文库,鉴定出了含有类RING锌指结构的Miz1/PIASxbeta/Siz2,它是SUMO途径中的一种泛素-蛋白质异肽连接酶,作为与TFII-I和hMusTRD1/BEN都相互作用的潜在核辅因子。我们的结论基于以下观察结果。首先,在哺乳动物细胞中,当这些蛋白质异位共表达时,Miz1/mPIASxbeta与TFII-I和hMusTRD1/BEN都相互作用,这种相互作用在生物化学上得到了证实。其次,Miz1/mPIASxbeta的核定位信号缺陷突变体与野生型TFII-I共表达未能改变前者的亚细胞定位。最后,异位表达的Miz1/mPIASxbeta增强了TFII-I的转录活性,并减轻了与TFII-I在细胞核中共定位的突变型hMusTRD1/BEN所施加的抑制作用。

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