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辅激活因子p/CIP/SRC-3通过招募GCN5促进视黄酸受体信号传导。

The coactivator p/CIP/SRC-3 facilitates retinoic acid receptor signaling via recruitment of GCN5.

作者信息

Brown Kirk, Chen Ying, Underhill T Michael, Mymryk Joe S, Torchia Joseph

机构信息

Department of Oncology, University of Western Ontario and the London Regional Cancer Centre, London, Ontario N6A 4L6, Canada.

出版信息

J Biol Chem. 2003 Oct 10;278(41):39402-12. doi: 10.1074/jbc.M307832200. Epub 2003 Jul 28.

Abstract

p/CIP/SRC-3 is a member of a family of steroid receptor coactivators/nuclear receptor coactivators (SRC/NCoA) proteins that mediate the transcriptional effects of nuclear hormone receptors (NRs). Using deletion analysis we have mapped the location of two distinct activation domains in p/CIP (AD1 and AD2) capable of activating transcription in mammalian cells when fused to the Gal4-DNA binding domain. In addition to AD1 being coincident with the interaction domain for CBP, we demonstrate a novel in vivo interaction between the AD1 and GCN5. Overexpression of a Gal4-AD1 fusion protein in yeast leads to growth arrest that is relieved by mutation of genes encoding components of the SAGA complex including GCN5, ADA3, and SPT7. In addition, the AD1 of p/CIP and the ADA3 gene are shown to be essential for retinoic acid receptor alpha-dependent transcription in yeast. Transient transfection assays in mammalian cells indicate that GCN5 cooperates with p/CIP as a coactivator of RAR alpha-dependent transcription. Down-regulation of GCN5 using small interfering RNA in mammalian cells indicates that the AD1 domain and the RAR beta promoter activity are dependent, in part, on GCN5. Mutational analysis of AD1 has identified two helical motifs that are required for interactions with GCN5 and CBP. Taken together, these results support a model by which p/CIP functions as a ligand-dependent adapter, through specific protein-protein interactions with AD1, to recruit members from at least two distinct families of acetyltransferase proteins to NRs.

摘要

p/CIP/SRC-3是类固醇受体共激活因子/核受体共激活因子(SRC/NCoA)蛋白家族的成员,该家族介导核激素受体(NRs)的转录效应。通过缺失分析,我们已确定p/CIP中两个不同激活域(AD1和AD2)的位置,当它们与Gal4-DNA结合域融合时,能够在哺乳动物细胞中激活转录。除了AD1与CBP的相互作用域重合外,我们还证明了AD1与GCN5之间存在一种新的体内相互作用。在酵母中过表达Gal4-AD1融合蛋白会导致生长停滞,而编码包括GCN5、ADA3和SPT7在内的SAGA复合物成分的基因突变可缓解这种停滞。此外,p/CIP的AD1和ADA3基因对于酵母中视黄酸受体α依赖性转录至关重要。在哺乳动物细胞中进行的瞬时转染试验表明,GCN5作为RARα依赖性转录的共激活因子与p/CIP协同作用。在哺乳动物细胞中使用小干扰RNA下调GCN5表明,AD1结构域和RARβ启动子活性部分依赖于GCN5。对AD1的突变分析已确定了与GCN5和CBP相互作用所需的两个螺旋基序。综上所述,这些结果支持了一个模型,即p/CIP通过与AD1的特异性蛋白质-蛋白质相互作用,作为配体依赖性衔接子,从至少两个不同的乙酰转移酶蛋白家族中招募成员至NRs。

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