Copper-dependent autophagic degradation of GPX4 drives ferroptosis.

IF 14.6 1区 生物学 Q1 CELL BIOLOGY
Qian Xue, Ding Yan, Xi Chen, Xiaofen Li, Rui Kang, Daniel J Klionsky, Guido Kroemer, Xin Chen, Daolin Tang, Jinbao Liu
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引用次数: 40

Abstract

Ferroptosis is a type of iron-dependent regulated cell death characterized by unrestricted lipid peroxidation and membrane damage. Although GPX4 (glutathione peroxidase 4) plays a master role in blocking ferroptosis by eliminating phospholipid hydroperoxides, the regulation of GPX4 remains poorly understood. Here, we report an unexpected role for copper in promoting ferroptotic cell death, but not cuproptosis, by inducing macroautophagic/autophagic degradation of GPX4. Copper chelators reduce ferroptosis sensitivity but do not inhibit other types of cell death, such as apoptosis, necroptosis, and alkaliptosis. Conversely, exogenous copper increases GPX4 ubiquitination and the formation of GPX4 aggregates by directly binding to GPX4 protein cysteines C107 and C148. TAX1BP1 (Tax1 binding protein 1) then acts as an autophagic receptor for GPX4 degradation and subsequent ferroptosis in response to copper stress. Consequently, copper enhances ferroptosis-mediated tumor suppression in a mouse model of pancreatic cancer tumor, whereas copper chelators attenuate experimental acute pancreatitis associated with ferroptosis. Taken together, these findings provide new insights into the link between metal stress and autophagy-dependent cell death.Abbreviations: CALCOCO2, calcium binding and coiled-coil domain 2; GPX4, glutathione peroxidase 4; MAP1LC3A/B, microtubule associated protein 1 light chain 3 alpha/beta; MPO, myeloperoxidase; NCOA4, nuclear receptor coactivator 4; OPTN, optineurin; PDAC, pancreatic ductal adenocarcinoma; RIPK1, receptor interacting serine/threonine kinase 1; ROS, reactive oxygen species; SLC40A1, solute carrier family 40 member 1; SQSTM1, sequestosome 1; TAX1BP1, Tax1 binding protein 1; TEPA, tetraethylenepentamine; TM, tetrathiomolybdate.

铜依赖的GPX4自噬降解驱动铁下垂。
铁死亡是一种铁依赖性的细胞死亡,其特征是无限制的脂质过氧化和膜损伤。虽然GPX4(谷胱甘肽过氧化物酶4)通过消除磷脂氢过氧化物在阻断铁下垂中起主要作用,但GPX4的调控尚不清楚。在这里,我们报道了铜通过诱导GPX4的巨噬/自噬降解,在促进铁细胞死亡而不是铜增生中的意想不到的作用。铜螯合剂降低铁下垂敏感性,但不抑制其他类型的细胞死亡,如凋亡、坏死下垂和碱下垂。相反,外源铜通过直接与GPX4蛋白半胱氨酸C107和C148结合,增加GPX4的泛素化和GPX4聚集体的形成。在铜胁迫下,TAX1BP1 (Tax1结合蛋白1)作为GPX4降解和随后的铁凋亡的自噬受体。因此,在小鼠胰腺癌肿瘤模型中,铜增强了铁下垂介导的肿瘤抑制,而铜螯合剂则减弱了与铁下垂相关的实验性急性胰腺炎。综上所述,这些发现为金属应激与依赖自噬的细胞死亡之间的联系提供了新的见解。缩略语:CALCOCO2,钙结合和线圈结构域2;GPX4,谷胱甘肽过氧化物酶4;MAP1LC3A/B,微管相关蛋白1轻链3 α / β;MPO、髓过氧物酶;NCOA4,核受体辅激活剂4;OPTN optineurin;PDAC,胰腺导管腺癌;受体相互作用丝氨酸/苏氨酸激酶1;ROS,活性氧;SLC40A1,溶质载体族40成员1;SQSTM1, sequestosome 1;TAX1BP1, Tax1结合蛋白1;涕巴,四乙烯戊胺;TM, tetrathiomolybdate。
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来源期刊
Autophagy
Autophagy 生物-细胞生物学
CiteScore
21.30
自引率
2.30%
发文量
277
审稿时长
1 months
期刊介绍: Autophagy is a peer-reviewed journal that publishes research on autophagic processes, including the lysosome/vacuole dependent degradation of intracellular material. It aims to be the premier journal in the field and covers various connections between autophagy and human health and disease, such as cancer, neurodegeneration, aging, diabetes, myopathies, and heart disease. Autophagy is interested in all experimental systems, from yeast to human. Suggestions for specialized topics are welcome. The journal accepts the following types of articles: Original research, Reviews, Technical papers, Brief Reports, Addenda, Letters to the Editor, Commentaries and Views, and Articles on science and art. Autophagy is abstracted/indexed in Adis International Ltd (Reactions Weekly), EBSCOhost (Biological Abstracts), Elsevier BV (EMBASE and Scopus), PubMed, Biological Abstracts, Science Citation Index Expanded, Web of Science, and MEDLINE.
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