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Activation of p53 Transcriptional Activity by SMRT: a Histone Deacetylase 3-Independent Function of a Transcriptional Corepressor

机译:SMRT p53转录活性的激活:组蛋白去乙酰化酶3独立的转录corepressor功能。

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The silencing mediator of retinoic acid and thyroid hormone receptors (SMRT) is an established histone deacetylase 3 (HDAC3)-dependent transcriptional corepressor. Microarray analyses of MCF-7 cells transfected with control or SMRT small interfering RNA revealed SMRT regulation of genes involved in DNA damage responses, and the levels of the DNA damage marker γH2AX as well as poly(ADP-ribose) polymerase cleavage were elevated in SMRT-depleted cells treated with doxorubicin. A number of these genes are established p53 targets. SMRT knockdown decreased the activity of two p53-dependent reporter genes as well as the expression of p53 target genes, such as CDKN1A (which encodes p21). SMRT bound directly to p53 and was recruited to p53 binding sites within the p21 promoter. Depletion of GPS2 and TBL1, components of the SMRT corepressor complex, but not histone deacetylase 3 (HDAC3) decreased p21-luciferase activity. p53 bound to the SMRT deacetylase activation domain (DAD), which mediates HDAC3 binding and activation, and HDAC3 could attenuate p53 binding to the DAD region of SMRT. Moreover, an HDAC3 binding-deficient SMRT DAD mutant coactivated p53 transcriptional activity. Collectively, these data highlight a biological role for SMRT in mediating DNA damage responses and suggest a model where p53 binding to the DAD limits HDAC3 interaction with this coregulator, thereby facilitating SMRT coactivation of p53-dependent gene expression.
机译:视黄酸和甲状腺激素受体(SMRT)的沉默介体是已建立的组蛋白脱乙酰基酶3(HDAC3)依赖性转录共表达。对用对照或SMRT小干扰RNA转染的MCF-7细胞进行的微阵列分析显示,SMRT对参与DNA损伤反应的基因进行了调控,并且SMRT中DNA损伤标志物γH2AX以及聚ADP-核糖聚合酶裂解的水平提高了阿霉素处理的干细胞。这些基因中有许多是建立的p53靶标。 SMRT抑制可降低两个p53依赖的报告基因的活性以及p53靶基因(如 CDKN1A (编码p21)的表达。 SMRT直接与p53结合,并被募集到p21启动子内的p53结合位点。 GPS2和TBL1,SMRT核心加压复合物的组成部分的耗竭,但组蛋白脱乙酰基酶3(HDAC3)的耗竭却降低了p21荧光素酶的活性。 p53与SMRT脱乙酰酶激活域(DAD)结合,介导HDAC3的结合和激活,而HDAC3可以减弱p53与SMRT DAD区域的结合。此外,一个HDAC3结合缺陷的SMRT DAD突变体共激活了p53转录活性。总体而言,这些数据突出了SMRT在介导DNA损伤反应中的生物学作用,并提出了一个模型,其中p53与DAD的结合限制了HDAC3与该共能调节剂的相互作用,从而促进了p53依赖性基因表达的SMRT共激活。

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