过氧化物酶体输入应激激活综合应激反应并抑制核糖体的生物生成。

IF 2.2 Q2 MULTIDISCIPLINARY SCIENCES PNAS nexus Pub Date : 2024-09-30 eCollection Date: 2024-10-01 DOI:10.1093/pnasnexus/pgae429
Jinoh Kim, Kerui Huang, Pham Thuy Tien Vo, Ting Miao, Jacinta Correia, Ankur Kumar, Mirre J P Simons, Hua Bai
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引用次数: 0

摘要

细胞器特异性蛋白质导入受损会引发多种细胞应激反应,包括平衡蛋白质平衡的适应性途径。以往的研究大多集中于内质网或线粒体中折叠错误的蛋白质或缺陷蛋白质导入所引发的细胞应激反应。然而,人们对过氧化物酶体中蛋白质导入受损所引发的细胞应激反应知之甚少,而过氧化物酶体是一种未被充分研究的细胞器,近来已成为细胞和代谢平衡的关键信号枢纽。为了揭示过氧化物酶体导入缺陷时进化保守的细胞反应,我们对组织特异性过氧化物酶敲除的果蝇和表达显性阴性 PEX5C11A 的人类 HEK293 细胞进行了转录组学比较分析。我们的RNA-seq结果显示,在果蝇和人类细胞中,过氧化物酶体导入缺陷会上调综合应激反应(ISR),下调核糖体生物发生。功能分析证实,过氧化物酶体导入受损会诱导 eIF2α 磷酸化和 ATF4 表达。ATF4 的缺失会加剧过氧物酶体导入缺陷对细胞造成的损害,这表明 ATF4 的激活是过氧物酶体导入压力下的一种细胞保护机制。有趣的是,我们发现过氧异构体导入应激会降低 rRNA 处理基因的表达,抑制早期 preRNA 处理,从而导致 47S 前体 rRNA 的积累和下游 rRNA 中间产物的减少。综上所述,我们发现 ISR 激活和核糖体生物发生抑制是对过氧化物酶体导入缺陷的保守适应性应激反应,并揭示了过氧化物酶体功能障碍与 rRNA 加工之间的新联系。
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Peroxisomal import stress activates integrated stress response and inhibits ribosome biogenesis.

Impaired organelle-specific protein import triggers a variety of cellular stress responses, including adaptive pathways to balance protein homeostasis. Most of the previous studies focus on the cellular stress response triggered by misfolded proteins or defective protein import in the endoplasmic reticulum or mitochondria. However, little is known about the cellular stress response to impaired protein import in the peroxisome, an understudied organelle that has recently emerged as a key signaling hub for cellular and metabolic homeostasis. To uncover evolutionarily conserved cellular responses upon defective peroxisomal import, we carried out a comparative transcriptomic analysis on fruit flies with tissue-specific peroxin knockdown and human HEK293 cells expressing dominant-negative PEX5C11A. Our RNA-seq results reveal that defective peroxisomal import upregulates integrated stress response (ISR) and downregulates ribosome biogenesis in both flies and human cells. Functional analyses confirm that impaired peroxisomal import induces eIF2α phosphorylation and ATF4 expression. Loss of ATF4 exaggerates cellular damage upon peroxisomal import defects, suggesting that ATF4 activation serves as a cellular cytoprotective mechanism upon peroxisomal import stress. Intriguingly, we show that peroxisomal import stress decreases the expression of rRNA processing genes and inhibits early pre-rRNA processing, which leads to the accumulation of 47S precursor rRNA and reduction of downstream rRNA intermediates. Taken together, we identify ISR activation and ribosome biogenesis inhibition as conserved adaptive stress responses to defective peroxisomal import and uncover a novel link between peroxisomal dysfunction and rRNA processing.

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