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Mitochondrial Sirtuins and Their Relationships with Metabolic Disease and Cancer

机译:线粒体Sirtuins及其与代谢性疾病和癌症的关系

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Significance: Maintenance of metabolic homeostasis is critical for cellular and organismal health. Proper regulation of mitochondrial functions represents a crucial element of overall metabolic homeostasis. Mitochondrial sirtuins (SIRT3, SIRT4, and SIRT5) play pivotal roles in promoting this homeostasis by regulating numerous aspects of mitochondrial metabolism in response to environmental stressors. Recent Advances: New work has illuminated multiple links between mitochondrial sirtuins and cancer. SIRT5 has been shown to regulate the recently described post-translational modifications succinyl-lysine, malonyl-lysine, and glutaryl-lysine. An understanding of these modifications is still in its infancy. Enumeration of SIRT3 and SIRT5 targets via advanced proteomic techniques promises to dramatically enhance insight into functions of these proteins. Critical Issues: In this review, we highlight the roles of mitochondrial sirtuins and their targets in cellular and organismal metabolic homeostasis. Furthermore, we discuss emerging roles for mitochondrial sirtuins in suppressing and/or promoting tumorigenesis, depending on the cellular and molecular context. Future Directions: Currently, hundreds of potential SIRT3 and SIRT5 molecular targets have been identified in proteomic experiments. Future studies will need to validate the major targets of these enzymes, and elucidate how acetylation and/or acylation modulate their functionality. A great deal of interest exists in targeting sirtuins pharmacologically; this endeavor will require development of sirtuin-specific modulators (activators and inhibitors) as potential treatments for cancer and metabolic disease. Antioxid. Redox Signal. 22, 1060-1077.
机译:意义:维持代谢稳态对细胞和机体健康至关重要。适当调节线粒体功能代表了整体代谢稳态的关键因素。线粒体sirtuins(SIRT3,SIRT4和SIRT5)通过调节线粒体代谢的许多方面以响应环境压力,在促进这种体内平衡方面起着关键作用。最新进展:新工作阐明了线粒体sirtuins与癌症之间的多种联系。已显示SIRT5调节最近描述的翻译后修饰琥珀酰赖氨酸,丙二酰赖氨酸和戊二酰赖氨酸。对这些修改的理解仍处于起步阶段。通过先进的蛋白质组学技术对SIRT3和SIRT5靶标进行计数有望显着增强对这些蛋白质功能的了解。关键问题:在这篇综述中,我们着重介绍了线粒体沉默调节蛋白及其靶标在细胞和机体代谢稳态中的作用。此外,我们讨论了线粒体sirtuins在抑制和/或促进肿瘤发生中的新兴作用,具体取决于细胞和分子环境。未来方向:目前,在蛋白质组学实验中已经确定了数百种潜在的SIRT3和SIRT5分子靶标。未来的研究将需要验证这些酶的主要靶标,并阐明乙酰化和/或酰化如何调节其功能。在药理学上靶向沉默调节蛋白存在很大的兴趣。这项工作将需要开发瑟土因特异性调节剂(活化剂和抑制剂)作为癌症和代谢性疾病的潜在治疗方法。抗氧化。氧化还原信号。 22,1060-1077。

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