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Lead (Pb) induced ATM-dependent mitophagy via PINK1/Parkin pathway

机译:铅(PB)通过Pink1 / Parkin途径诱导ATM依赖性斑驳

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Lead (Pb), a widely distributed environmental pollutant, is known to induce mitochondrial damage as well as autophagy in vitro and in vivo. In this study, we found that Pb could trigger mitophagy in both HEK293 cells and the kidney cortex of male Kunming mice. However, whether ataxia telangiectasis mutated (ATM) which is reported to be linked with PTEN-induced putative kinase 1 (PINK1)/Parkin pathway (a well-characterized mitophagic pathway) participates in the regulation of Pb-induced mitophagy and its exact role remains enigmatic. Our results indicated that Pb activated ATM in vitro and in vivo, and further in vitro studies showed that ATM could co-localize with PINK1 and Parkin in cytosol and interact with PINK1. Knockdown of ATM by siRNA blocked Pb-induced mitophagy even under the circumstance of enhanced accumulation of PINK1 and mitochondrial Parkin. Intriguingly, elevation instead of reduction in phosphorylation level of PINK1 and Parkin was observed in response to ATM knockdown and Pb did not contribute to the further increase of their phosphorylation level, implying that ATM indirectly regulated PINK1/Parkin pathway. These findings reveal a novel mechanism for Pb toxicity and suggest the regulatory importance of ATM in PINK1/Parkin-mediated mitophagy.
机译:铅(Pb)是一种广泛分布的环境污染物,众所周知,在体外和体内诱发线粒体损伤以及自噬。在这项研究中,我们发现PB可以在HEK293细胞和肾皮层的肾皮层中引发患者。然而,据报道据报道与PTEN诱导的推定激酶1(PINK1)/ parkin途径(一种特征在于特征的乳蛋白途径)相关的Ataxia Telanciectasis(ATM)参与PB诱导的肠系古的调节,其确切的作用仍然存在神秘的。我们的结果表明,PB活性ATM在体外和体内,进一步的体外研究表明,ATM可以与Cytosol中的Pink1和Parkin共定,并与Pink1相互作用。即使在Pink1和线粒体Parkin的增强的情况下,SiRNA通过siRNA敲低ATM阻断了PB诱导的肠系。有趣的是,响应于ATM敲低的升高而不是粉红色的磷酸化水平的磷酸化水平,并且PB没有导致其磷酸化水平的进一步增加,这意味着ATM间接调节粉红色1 / Parkin途径。这些发现揭示了一种新的PB毒性机制,并提出了粉红色的粉红色/帕丁介导的肠系中ATM的监管重要性。

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