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Multifaceted roles of ATM in autophagy: From nonselective autophagy to selective autophagy

机译:ATM在自噬中的多方特征:从非选择性自噬从选择性自噬

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摘要

The ataxia‐telangiectasia mutated (ATM) protein kinase is best known for its critical nuclear roles in the DNA damage response (DDR), cell cycle checkpoints, and the maintenance of gene stability. In this review, we highlight the multifaceted cytoplasmic functions of ATM in autophagy. We focused on the functions of ATM in nonselective autophagy in cancer. An Oncomine database analysis showed a tight association between ATM and autophagy in various cancers. In particular, its mechanisms in nonselective autophagy, those induced by ionizing radiation (IR), are illustrated in detail and involve the MAPK14 pathway, mTOR pathway, and Beclin1/PI3KIII complexes. Recently, an increasing number of studies revealed that autophagy could also be highly selective. We additionally emphasized the novel roles of ATM in selective autophagy, including mitophagy, pexophagy, and lipophagy. The regulation of these processes mainly involves ATM‐PEX5, ATM‐AMPK‐TSC2‐mTORC1‐ULK1, PPM1D‐ATM‐MTOR, PINK I/Parkin, and NAD+/SIRT1. We aimed to provide new perspectives on the importance of ATM in the diverse field of autophagy. The intricate regulation of ATM in autophagy still requires further investigation, which would enhance our understanding of its role in cell dynamics and homeostasis. Significance of the study Our review highlighted the multifaceted cytoplasmic functions of ATM on autophagy. First, we focused on the functions of ATM in nonselective autophagy within cancer especially those induced by IR, involving the MAPK14 pathway, mTOR pathway, and Beclin1/PI3KIII complexes. These provided a theoretical understanding of tumour radiosensitivity and chemosensitivity. In addition, we emphasized the novel roles of ATM in selective autophagy, including mitophagy, pexophagy, and lipophagy. This review provides new perspectives on the importance of ATM in the diverse field of autophagy, which would provide more information on its role in whole cell dynamics and homeostasis.
机译:Ataxia-Telanciectasia突变(ATM)蛋白激酶在DNA损伤响应(DDR),细胞周期检查点和基因稳定性的维持中,其临界核作用是最着名的。在本次综述中,我们突出了自噬的ATM的多型细胞质功能。我们专注于癌症中非选择性自噬的功能。 on oncomeine数据库分析显示在各种癌症中的ATM和自噬之间紧张。特别地,其在非选择性自噬中的机制,通过电离辐射(IR)诱导的那些,并涉及MAPK14途径,MTOR途径和BEC3KIII复合物。最近,越来越多的研究表明,自噬也可能是高度选择性的。我们另外强调了ATM在选择性自噬中的新角色,包括细菌症,普法力和脂肪性。这些过程的调节主要涉及ATM-PEX5,ATM-AMPK-TSC2-MTORC1-ULK1,PPM1D-ATM-MTOR,PINK I / PARKIN和NAD + / SIRT1。我们旨在为自动侵害各种领域的ATM重要性提供新的观点。 ATM在自噬中的复杂调节仍需要进一步调查,这将提高我们对其在细胞动态和稳态中的作用的理解。研究的意义我们的评论强调了自噬的ATM的多方面细胞质功能。首先,我们专注于癌症内的非选择性自噬的功能,特别是由IR诱导的癌症,涉及MAPK14途径,MTOR途径和BEC3KIII复合物。这些提供了对肿瘤放射敏感性和化学敏感性的理论理解。此外,我们强调了ATM在选择性自噬中的新角色,包括细菌症,普法力和脂肪性。该审查提供了关于ATM在自动自噬中的不同领域的重要性的新观点,这将提供更多关于其在整个细胞动态和稳态中的作用的更多信息。

著录项

  • 来源
    《Cell biochemistry and function》 |2019年第3期|共8页
  • 作者单位

    Division of Thyroid Surgery China‐Japan Union Hospital of Jilin University Jilin Provincial Key;

    Division of Thyroid Surgery China‐Japan Union Hospital of Jilin University Jilin Provincial Key;

    School of Public Health and ManagementWenzhou Medical UniversityWenzhou City Zhejiang Province China;

    Division of Thyroid Surgery China‐Japan Union Hospital of Jilin University Jilin Provincial Key;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

    ATM; autophagy; lipophagy; mitophagy; pexophagy; selective autophagy;

    机译:ATM;自噬;Pipophagy;mitophagy;pexophagy;选择性自噬;

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