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Tumor Suppressor Protein p53 Recruits Human Sin3B/HDAC1 Complex for Down-Regulation of Its Target Promoters in Response to Genotoxic Stress

机译:肿瘤抑制蛋白p53招募人类Sin3B / HDAC1复合体,以下调其靶基因启动子对基因毒性应激的反应

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摘要

Master regulator protein p53, popularly known as the “guardian of genome” is the hub for regulation of diverse cellular pathways. Depending on the cell type and severity of DNA damage, p53 protein mediates cell cycle arrest or apoptosis, besides activating DNA repair, which is apparently achieved by regulation of its target genes, as well as direct interaction with other proteins. p53 is known to repress target genes via multiple mechanisms one of which is via recruitment of chromatin remodelling Sin3/HDAC1/2 complex. Sin3 proteins (Sin3A and Sin3B) regulate gene expression at the chromatin-level by serving as an anchor onto which the core Sin3/HDAC complex is assembled. The Sin3/HDAC co-repressor complex can be recruited by a large number of DNA-binding transcription factors. Sin3A has been closely linked to p53 while Sin3B is considered to be a close associate of E2Fs. The theme of this study was to establish the role of Sin3B in p53-mediated gene repression. We demonstrate a direct protein-protein interaction between human p53 and Sin3B (hSin3B). Amino acids 1–399 of hSin3B protein are involved in its interaction with N-terminal region (amino acids 1–108) of p53. Genotoxic stress induced by Adriamycin treatment increases the levels of hSin3B that is recruited to the promoters of p53-target genes (HSPA8, MAD1 and CRYZ). More importantly recruitment of hSin3B and repression of the three p53-target promoters upon Adriamycin treatment were observed only in p53+/+ cell lines. Additionally an increased tri-methylation of the H3K9 residue at the promoters of HSPA8 and CRYZ was also observed following Adriamycin treatment. The present study highlights for the first time the essential role of Sin3B as an important associate of p53 in mediating the cellular responses to stress and in the transcriptional repression of genes encoding for heat shock proteins or proteins involved in regulation of cell cycle and apoptosis.
机译:主调节蛋白p53,通常被称为“基因组守护者”,是调节多种细胞途径的枢纽。根据细胞类型和DNA损伤的严重程度,p53蛋白除了激活DNA修复外还介导细胞周期停滞或凋亡,这显然是通过调节其靶基因以及与其他蛋白的直接相互作用来实现的。已知p53通过多种机制抑制靶基因,其中之一是通过募集染色质重塑Sin3 / HDAC1 / 2复合物。 Sin3蛋白(Sin3A和Sin3B)通过充当核心Sin3 / HDAC复合体装配在其上的锚来调节染色质水平的基因表达。 Sin3 / HDAC协同阻遏物复合物可以被大量的DNA结合转录因子募集。 Sin3A与p53紧密相连,而Sin3B被认为是E2F的紧密联系者。这项研究的主题是确定Sin3B在p53介导的基因阻抑中的作用。我们证明了人类p53和Sin3B(hSin3B)之间的直接蛋白质相互作用。 hSin3B蛋白的1–399位氨基酸与p53的N末端区域(1–108位氨基酸)相互作用。阿霉素治疗引起的基因毒性应激会增加被募集到p53靶基因(HSPA8,MAD1和CRYZ)启动子的hSin3B的水平。更重要的是,仅在p53 + / + 细胞系中观察到了hSin3B的募集和阿霉素处理后三个p53靶启动子的阻遏。另外,在阿霉素处理后,还观察到在HSPA8和CRYZ的启动子处H3K9残基的三甲基化增加。本研究首次强调了Sin3B作为p53的重要联系者在介导细胞对应激的应答以及编码热休克蛋白或参与细胞周期和细胞凋亡调控的蛋白的转录抑制中的重要作用。

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