Nuclear GAPDH: changing the fate of Müller cells in diabetes.

Prathiba Jayaguru, Susanne Mohr
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引用次数: 12

Abstract

Müller cells, the primary glial cells are a crucial component of the retinal tissue performing a wide range of functions including maintaining the blood-retinal barrier. Several studies suggest that diabetes leads to Müller cell dysfunction and loss. The pathophysiology of hyperglycemia-induced cellular injury of Müller cells remains only poorly understood. Recently, the concept that translocation of the predominantly cytosolic glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPDH) to the nucleus and its accumulation in this cellular compartment alters transcriptional events associated with cell death induction has gained major interest. High glucose conditions induce nuclear translocation and accumulation of GAPDH in the nucleus of Müller cells in vivo and in vitro. With regards to Müller cell dysfunction, the effects of nuclear accumulation of GAPDH are multifaceted. Considering the functional versatility of GAPDH including gene regulation, DNA repair, telomere protection, etc., it is of immense importance to explore possible GAPDH actions to unravel the mysteries around the role of GAPDH in hyperglycemia-induced cellular changes in order to develop novel therapeutic strategies. Therefore, this review focuses on the molecular events associated with the nuclear translocation of GAPDH and how it affects the fate of Müller cells in diabetes.

核GAPDH:改变糖尿病患者心肌细胞的命运。
原代神经胶质细胞是视网膜组织的重要组成部分,具有多种功能,包括维持血液-视网膜屏障。几项研究表明,糖尿病会导致勒细胞功能障碍和损失。高血糖诱导的勒细胞损伤的病理生理机制仍然知之甚少。最近,主要的细胞质糖酵解酶甘油醛-3-磷酸脱氢酶(GAPDH)向细胞核的易位及其在细胞室的积累改变了与细胞死亡诱导相关的转录事件的概念引起了人们的极大兴趣。在体内和体外实验中,高糖条件诱导核易位和GAPDH在勒细胞细胞核中积累。关于勒细胞功能障碍,GAPDH核积累的影响是多方面的。考虑到GAPDH在基因调控、DNA修复、端粒保护等功能上的多功能性,探索GAPDH可能的作用,揭开GAPDH在高血糖诱导的细胞变化中的作用之谜,从而开发新的治疗策略具有重要意义。因此,本文将重点讨论与GAPDH核易位相关的分子事件及其如何影响糖尿病中 ller细胞的命运。
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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