首页> 美国卫生研究院文献>The EMBO Journal >MAT1 (menage à trois) a new RING finger protein subunit stabilizing cyclin H-cdk7 complexes in starfish and Xenopus CAK.
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MAT1 (menage à trois) a new RING finger protein subunit stabilizing cyclin H-cdk7 complexes in starfish and Xenopus CAK.

机译:MAT1(menageàtrois)一种新的稳定海星和非洲爪蟾CAK中的RING指蛋白亚基的细胞周期蛋白H-cdk7复合物。

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摘要

The kinase responsible for Thr161-Thr160 phosphorylation and activation of cdc2/cdk2 (CAK:cdk-activating kinase) has been shown previously to comprise at least two subunits, cdk7 and cyclin H. An additional protein co-purified with CAK in starfish oocytes, but its sequencing did not reveal any similarity with any known protein. In the present work, a cDNA encoding this protein is cloned and sequenced in both starfish and Xenopus oocytes. It is shown to encode a new member of the RING finger family of proteins with a characteristic C3HC4 motif located in the N-terminal domain. We demonstrate that the RING finger protein (MAT1: 'menage à trois') is a new subunit of CAK in both vertebrate and invertebrates. However, CAK may also exist in oocytes as heterodimeric complexes between cyclin H and cdk7 only. Stable heterotrimeric CAK complexes were generated in reticulocyte lysates programmed with mRNAs encoding Xenopus cdk7, cyclin H and MAT1. In contrast, no heterodimeric cyclin H-cdk7 complex could be immunoprecipitated from reticulocyte lysates programmed with cdk7 and cyclin H mRNAs only. Stabilization of CAK complexes by MAT1 does not involve phosphorylation of Thr176, as the Thr176-->Ala mutant of Xenopus cdk7 could engage as efficiently as wild-type cdk7 in ternary complexes. Even though starfish MAT1 is almost identical to Xenopus MAT1 in the RING finger domain, the starfish subunit could not replace the Xenopus subunit and stabilize cyclin H-cdk7 in reticulocyte lysate, suggesting that the MAT1 subunit does not (or not only) interact with cyclin H-cdk7 through the RING finger domain.
机译:先前已证明负责Thr161-Thr160磷酸化和cdc2 / cdk2活化的激酶(CAK:cdk活化激酶)包含至少两个亚基cdk7和细胞周期蛋白H。在海星卵母细胞中与CAK共同纯化的另一种蛋白,但其测序结果并未显示与任何已知蛋白质的相似性。在本工作中,在海星和非洲爪蟾卵母细胞中均克隆了编码该蛋白的cDNA并进行了测序。它显示出编码RING手指蛋白家族的一个新成员,该蛋白具有位于N末端结构域的特征性C3HC4基序。我们证明了无名指蛋白(MAT1:'menageàtrois')是脊椎动物和无脊椎动物中CAK的一个新的亚基。但是,CAK也可能仅作为细胞周期蛋白H和cdk7之间的异二聚体复合物存在于卵母细胞中。稳定的异源三聚体CAK复合物在用编码非洲爪蟾cdk7,细胞周期蛋白H和MAT1的mRNA编程的网状细胞裂解物中产生。相反,仅用cdk7和cyclin H mRNA编程的网状细胞裂解液不能免疫沉淀异二聚体cyclin H-cdk7复合物。通过MAT1稳定CAK复合物不涉及Thr176的磷酸化,因为非洲爪蟾cdk7的Thr176-> Ala突变体可以与野生型cdk7一样有效地参与三元复合物中。即使海星MAT1在RING指域中与非洲爪蟾MAT1几乎相同,海星亚基也不能取代非洲爪蟾亚基并不能稳定网状细胞裂解物中的细胞周期蛋白H-cdk7,这表明MAT1亚基不会(或不仅)与细胞周期蛋白相互作用H-cdk7通过RING指域。

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