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PP2A Regulates Phosphorylation-Dependent Isomerization of Cytoplasmic and Mitochondrial-Associated ATR by Pin1 in DNA Damage Responses

机译:PP2A通过PIN1调节细胞质和线粒体相关ATR的磷酸化依赖性异构化在DNA损伤响应中的PIN1

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Ataxia telangiectasia and Rad3-related protein (ATR) is a serine/threonine-protein kinase of the PI3K family and is well known for its key role in regulating DNA damage responses in the nucleus. In addition to its nuclear functions, ATR also was found to be a substrate of the prolyl isomerase Pin1 in the cytoplasm where Pin1 isomerizes cis ATR at the Ser428-Pro429 motif, leading to formation of trans ATR. Cis ATR is an antiapoptotic protein at mitochondria upon UV damage. Here we report that Pin1’s activity on cis ATR requires the phosphorylation of the S428 residue of ATR and describe the molecular mechanism by which Pin1-mediated ATR isomerization in the cytoplasm is regulated. We identified PP2A as the phosphatase that dephosphorylates Ser428 following DNA damage. The dephosphorylation led to an increased level of the antiapoptotic cis ATR (ATR-H) in the cytoplasm and, thus, its accumulation at mitochondria via binding with tBid. Inhibition or depletion of PP2A promoted the isomerization by Pin1, resulting in a reduction of cis ATR with an increased level of trans ATR. We conclude that PP2A plays an important role in regulating ATR’s anti-apoptotic activity at mitochondria in response to DNA damage. Our results also imply a potential strategy in enhancing cancer therapies via selective moderation of cis ATR levels.
机译:Ataxia Telanciectasia和Rad3相关蛋白(ATR)是PI3K系列的丝氨酸/苏氨酸 - 蛋白激酶,众所周知,在调节细胞核中调节DNA损伤反应的关键作用。除了核函数之外,还发现ATR在细胞质中的脯氨酰异构酶PIN1中的基材,其中PIN1在SER428-PRO429基序列中发现CIS ATR,导致反式ATR的形成。 CIS ATR是UV损伤的线粒体的抗曝光蛋白。在这里,我们认为PIN1对CIS ATR的活性需要ATR的S428残基的磷酸化,并描述CIS中的分子机制,通过该分子机制被调节细胞质中的intr介导的ATR异构化。我们将PP2A鉴定为在DNA损伤后去磷酸化SER428的磷酸酶。脱磷酸化导致细胞质中的抗透露性CIS ATR(ATR-H)的水平增加,因此通过与Tbid结合在线粒体上积累。 PP2A的抑制或耗竭通过PIN1促进异构化,导致CIS ATR的降低,随着反式ATR的增加。我们得出结论,PP2A在对DNA损伤的响应作出线粒体对线粒体的抗凋亡活动方面发挥着重要作用。我们的结果也暗示了通过CIS ATR水平的选择性调节增强癌症疗法的潜在策略。

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