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自噬在眼睛晶状体分化和透明性中的作用需求。

Autophagy Requirements for Eye Lens Differentiation and Transparency.

机构信息

Department of Biomedical Science, Schmidt College of Medicine, Florida Atlantic University, Boca Raton, FL 33460, USA.

Department of Cell Biology and Physiology, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Cells. 2023 Feb 1;12(3):475. doi: 10.3390/cells12030475.

Abstract

Recent evidence points to autophagy as an essential cellular requirement for achieving the mature structure, homeostasis, and transparency of the lens. Collective evidence from multiple laboratories using chick, mouse, primate, and human model systems provides evidence that classic autophagy structures, ranging from double-membrane autophagosomes to single-membrane autolysosomes, are found throughout the lens in both undifferentiated lens epithelial cells and maturing lens fiber cells. Recently, key autophagy signaling pathways have been identified to initiate critical steps in the lens differentiation program, including the elimination of organelles to form the core lens organelle-free zone. Other recent studies using ex vivo lens culture demonstrate that the low oxygen environment of the lens drives HIF1a-induced autophagy via upregulation of essential mitophagy components to direct the specific elimination of the mitochondria, endoplasmic reticulum, and Golgi apparatus during lens fiber cell differentiation. Pioneering studies on the structural requirements for the elimination of nuclei during lens differentiation reveal the presence of an entirely novel structure associated with degrading lens nuclei termed the nuclear excisosome. Considerable evidence also indicates that autophagy is a requirement for lens homeostasis, differentiation, and transparency, since the mutation of key autophagy proteins results in human cataract formation.

摘要

最近的证据表明,自噬是晶状体达到成熟结构、维持内稳态和透明性的必要细胞要求。多个实验室使用鸡、鼠、灵长类和人类模型系统的综合证据表明,经典的自噬结构,从双层自噬体到单层自溶体,存在于未分化的晶状体上皮细胞和成熟的晶状体纤维细胞中的整个晶状体中。最近,关键的自噬信号通路已被确定为启动晶状体分化程序的关键步骤,包括消除细胞器以形成核心无晶状体器官的区域。其他最近使用离体晶状体培养的研究表明,晶状体的低氧环境通过上调必需的线粒体自噬成分来驱动 HIF1a 诱导的自噬,以指导在晶状体纤维细胞分化过程中特异性消除线粒体、内质网和高尔基体。关于在晶状体分化过程中消除核的结构要求的开创性研究揭示了与降解晶状体核相关的一种全新结构,称为核切除体。大量证据还表明,自噬是晶状体内稳态、分化和透明性的必要条件,因为关键自噬蛋白的突变会导致人类白内障的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/402f/9914699/76d8348e8f81/cells-12-00475-g001.jpg

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