The new kids on the block: RNA-binding proteins regulate autophagy in disease

Shai Dushnitzky, Hasan Ishtayeh, Avraham Ashkenazi
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Abstract

Mammalian autophagy is a highly regulated and conserved cellular homeostatic process. Its existence allows the degradation of self-components to mediate cell survival in different stress conditions. Autophagy is involved in the regulation of cellular metabolic needs, protecting the cell or tissue from starvation through the degradation and recycling of cytoplasmic materials and organelles to basic molecular building blocks. It also plays a critical role in eliminating damaged or harmful proteins, organelles, and intracellular pathogens. Thus, a deterioration of the process may result in pathological conditions, such as aging-associated disorders and cancer. Understanding the crucial role of autophagy in maintaining the normal physiological function of cells, tissue, or organs has led to copious and expansive research regarding the regulation of this process. So far, most of the research has revolved around transcriptional and post-translational regulation. Here, we discuss the regulation of autophagy-related (ATG) mRNA transcripts by RNA-binding proteins (RBPs). This analysis focuses on how RBPs modulate autophagy in disease. A deeper understanding of the involvement of RBPs in autophagy can facilitate further research and treatment of a variety of human diseases.

Abstract Image

新来的孩子RNA结合蛋白调节疾病中的自噬作用
哺乳动物的自噬是一种高度调节和保守的细胞平衡过程。自噬的存在使自身成分得以降解,从而帮助细胞在不同的应激条件下存活下来。自噬参与细胞代谢需求的调节,通过降解和回收细胞质材料和细胞器,使其成为基本的分子构件,从而保护细胞或组织免受饥饿。它在消除受损或有害蛋白质、细胞器和细胞内病原体方面也发挥着关键作用。因此,自噬过程的恶化可能导致衰老相关疾病和癌症等病理状况。由于了解到自噬在维持细胞、组织或器官正常生理功能方面的关键作用,人们对这一过程的调控进行了大量、广泛的研究。迄今为止,大多数研究都围绕转录和翻译后调控展开。在这里,我们将讨论 RNA 结合蛋白(RBPs)对自噬相关 mRNA 转录本的调控。分析的重点是 RBPs 如何在疾病中调节自噬。深入了解 RBPs 在自噬中的参与有助于进一步研究和治疗多种人类疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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