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Chk2 and REG gamma-dependent DBC1 regulation in DNA damage induced apoptosis

机译:Chk2和REG伽玛依赖性DBC1调节DNA损伤诱导的细胞凋亡

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摘要

Human DBC1 (Deleted in Breast Cancer 1; KIAA1967; CCAR2) is a protein implicated in the regulation of apoptosis, transcription and histone modifications. Upon DNA damage, DBC1 is phosphorylated by ATM/ATR on Thr454 and this modification increases its inhibitory interaction with SIRT1, leading to p53 acetylation and p53-dependent apoptosis. Here, we report that the inhibition of SIRT1 by DBC1 in the DNA damage response (DDR) also depends on Chk2, the transducer kinase that is activated by ATM upon DNA lesions and contributes to the spreading of DNA damage signal. Indeed we found that inactivation of Chk2 reduces DBC1-SIRT1 binding, thus preventing p53 acetylation and DBC1-induced apoptosis. These events are mediated by Chk2 phosphorylation of the 11S proteasome activator REG gamma on Ser247, which increases REG gamma-DBC1 interaction and SIRT1 inhibition. Overall our results clarify the mechanisms underlying the DBC1-dependent SIRT1 inhibition and link, for the first time, Chk2 and REG gamma to the ATM-DBC1-SIRT1 axis.
机译:人DBC1(在乳腺癌1中缺失; KIAA1967; CCAR2)是一种涉及细胞凋亡,转录和组蛋白修饰的蛋白质。 DNA损伤后,DBC1在Thr454上被ATM / ATR磷酸化,这种修饰增加了它与SIRT1的抑制性相互作用,导致p53乙酰化和p53依赖性细胞凋亡。在这里,我们报告说DBC1在DNA损伤应答(DDR)中对SIRT1的抑制也取决于Chk2,Chk2是由ATM在DNA损伤后激活的换能激酶,并有助于DNA损伤信号的传播。实际上,我们发现Chk2的失活减少了DBC1-SIRT1的结合,从而防止了p53乙酰化和DBC1诱导的细胞凋亡。这些事件是由Ser247上的11S蛋白酶体活化剂REGγ的Chk2磷酸化介导的,这增加了REGγ-DBC1的相互作用和SIRT1的抑制。总体而言,我们的结果阐明了DBC1依赖性SIRT1抑制的潜在机制,并将Chk2和REGγ首次链接到ATM-DBC1-SIRT1轴。

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