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Nucleus-encoded regulators of mitochondrial function: Integration of respiratory chain expression, nutrient sensing and metabolic stress

机译:核编码的线粒体功能调节剂:呼吸链表达,营养素感测和代谢应激的整合

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摘要

Nucleus-encoded regulatory factors are major contributors to mitochondrial biogenesis and function. Several act within the organelle to regulate mitochondrial transcription and translation while others direct the expression of nuclear genes encoding the respiratory chain and other oxidative functions. Loss-of-function studies for many of these factors reveal a wide spectrum of phenotypes. These range from embryonic lethality and severe respiratory chain deficiency to relatively mild mitochondrial defects seen only under conditions of physiological stress. The PGC-1 family of regulated coactivators (PGC-1α, PGC-1β and PRC) plays an important integrative role through their interactions with transcription factors (NRF-1, NRF-2, ERRα, CREB, YY1 and others) that control respiratory gene expression. In addition, recent evidence suggests that PGC-1 coactivators may balance the cellular response to oxidant stress by promoting a pro-oxidant environment or by orchestrating an inflammatory response to severe metabolic stress. These pathways may serve as essential links between the energy generating functions of mitochondria and the cellular REDOX environment associated with longevity, senescence and disease. This article is part of a Special Issue entitled: Mitochondrial Gene Expression.
机译:核编码的调节因子是线粒体生物发生和功能的主要贡献者。一些在细胞器内起作用以调节线粒体的转录和翻译,而其他一些则指导编码呼吸链和其他氧化功能的核基因的表达。对许多这些因素的功能丧失研究显示了广泛的表型。这些范围从胚胎致死率和严重的呼吸链缺陷到仅在生理应激条件下可见的相对轻度的线粒体缺陷。 PGC-1调节型共激活因子家族(PGC-1α,PGC-1β和PRC)通过与控制呼吸系统的转录因子(NRF-1,NRF-2,ERRα,CREB,YY1等)的相互作用而发挥重要的整合作用基因表达。此外,最近的证据表明,PGC-1共激活剂可通过促进促氧化剂环境或协调对严重代谢应激的炎症反应来平衡细胞对氧化剂应激的反应。这些途径可作为线粒体的能量产生功能与与寿命,衰老和疾病相关的细胞氧化还原环境之间的重要联系。本文是名为“线粒体基因表达”的特刊的一部分。

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