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线粒体和代谢途径调节核基因表达以控制白血病中的分化、干细胞功能和免疫反应。

Mitochondrial and Metabolic Pathways Regulate Nuclear Gene Expression to Control Differentiation, Stem Cell Function, and Immune Response in Leukemia.

机构信息

Princess Margaret Cancer Centre, Toronto, Ontario, Canada.

Institute of Medical Science, University of Toronto, Toronto, Ontario, Canada.

出版信息

Cancer Discov. 2021 May;11(5):1052-1066. doi: 10.1158/2159-8290.CD-20-1227. Epub 2021 Jan 27.

Abstract

Mitochondria are involved in many biological processes including cellular homeostasis, energy generation, and apoptosis. Moreover, mitochondrial and metabolic pathways are interconnected with gene expression to regulate cellular functions such as cell growth, survival, differentiation, and immune recognition. Metabolites and mitochondrial enzymes regulate chromatin-modifying enzymes, chromatin remodeling, and transcription regulators. Deregulation of mitochondrial pathways and metabolism leads to alterations in gene expression that promote cancer development, progression, and evasion of the immune system. This review highlights how mitochondrial and metabolic pathways function as a central mediator to control gene expression, specifically on stem cell functions, differentiation, and immune response in leukemia. SIGNIFICANCE: Emerging evidence demonstrates that mitochondrial and metabolic pathways influence gene expression to promote tumor development, progression, and immune evasion. These data highlight new areas of cancer biology and potential new therapeutic strategies.

摘要

线粒体参与许多生物过程,包括细胞内稳态、能量产生和细胞凋亡。此外,线粒体和代谢途径与基因表达相互关联,以调节细胞功能,如细胞生长、存活、分化和免疫识别。代谢物和线粒体酶调节染色质修饰酶、染色质重塑和转录调节剂。线粒体途径和代谢的失调导致基因表达的改变,从而促进癌症的发展、进展和逃避免疫系统。本综述强调了线粒体和代谢途径如何作为中央介质来控制基因表达,特别是在白血病中的干细胞功能、分化和免疫反应方面。意义:新出现的证据表明,线粒体和代谢途径影响基因表达,促进肿瘤的发展、进展和免疫逃避。这些数据突出了癌症生物学的新领域和潜在的新治疗策略。

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