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维甲酸调节的MAT1泛素化和CAK活性。

Retinoid-modulated MAT1 ubiquitination and CAK activity.

作者信息

He Qiaojun, Peng Hui, Collins Steven J, Triche Timothy J, Wu Lingtao

机构信息

Department of Pathology, University of Southern California Keck School of Medicine, Los Angeles, California 90027, USA.

出版信息

FASEB J. 2004 Nov;18(14):1734-6. doi: 10.1096/fj.04-2182fje. Epub 2004 Sep 2.

Abstract

Human cyclin-dependent kinase (CDK)-activating kinase (CAK) has a dual function in cross-regulation of cell cycle and differentiation, whereas menage a trois 1 (MAT1) assembles CAK and determines CAK's substrate specificity. Although the dynamic state of MAT1 protein levels is found to modulate CAK activity, how intracellular regulation of MAT1 controls CAK activity is unknown. Recent studies demonstrate that retinoic acid (RA)-induced human HL60 cell proliferation/differentiation (P/D) transition is accompanied by MAT1 degradation and decreased CAK phosphorylation of retinoic acid receptor alpha (RARa). Thus, we investigated the biochemical pathway of MAT1 degradation and its relationship with CAK phosphorylation of RARa. We find that RA induces ubiquitination-proteolysis of MAT1 and that ubiquitin-proteasome targets CAK-free MAT1 only. RA-induced MAT1 ubiquitination reduces CAK abundance and decreases CAK phosphorylation of RARalpha, whereas inhibition of MAT1 ubiquitination resists this RA-effect. These findings reveal that RA induces MAT1 ubiquitination to decrease CAK phosphorylation of RARalpha, suggesting a novel mechanism of RA-mediated P/D transition in which MAT1 ubiquitination may act as an integral part of RA-effect to decrease CAK activity in the switch from proliferation to differentiation.

摘要

人细胞周期蛋白依赖性激酶(CDK)激活激酶(CAK)在细胞周期和分化的交叉调节中具有双重功能,而三人组蛋白1(MAT1)组装CAK并决定CAK的底物特异性。尽管发现MAT1蛋白水平的动态状态可调节CAK活性,但MAT1的细胞内调节如何控制CAK活性尚不清楚。最近的研究表明,视黄酸(RA)诱导的人HL60细胞增殖/分化(P/D)转变伴随着MAT1降解以及视黄酸受体α(RARα)的CAK磷酸化降低。因此,我们研究了MAT1降解的生化途径及其与RARα的CAK磷酸化的关系。我们发现RA诱导MAT1的泛素化-蛋白酶解,并且泛素-蛋白酶体仅靶向无CAK的MAT1。RA诱导的MAT1泛素化降低了CAK丰度并减少了RARα的CAK磷酸化,而抑制MAT1泛素化可抵抗这种RA效应。这些发现表明,RA诱导MAT1泛素化以降低RARα的CAK磷酸化,提示RA介导的P/D转变的一种新机制,其中MAT1泛素化可能作为RA效应的一个组成部分,在从增殖到分化的转变中降低CAK活性。

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