[关键词]
[摘要]
眼睛具有重要的视觉功能。然而糖尿病视网膜病变、年龄相关性黄斑变性等疾病的发生导致视力下降。O-糖基化作为修饰蛋白质的重要方式之一,影响着眼部各种蛋白的结构、稳定性及作用。近年研究发现,O-糖基化在眼部具有双重作用:(1)O-糖基化的正常存在维持着眼表屏障功能及视网膜光感受器的存活。(2)其异常水平通过激活信号通路、调控基因表达等机制介导眼部疾病的病理过程。同时O-糖基化与磷酸化的串扰作用,共同参与复杂的病理分子机制。文章通过总结三种类型的O-糖基化在眼部的生理保护及病理机制,探讨其在眼部疾病的治疗前景。并且展望未来结合纳米递送等新兴技术,提供靶向治疗策略,促进从理论到实践的转变。
[Key word]
[Abstract]
The eye serves critical visual functions. However, the occurrence of diseases such as diabetic retinopathy and age-related macular degeneration leads to visual impairment. O-glycosylation, as an important mode of protein modification, affects the structure, stability, and function of various ocular proteins. Recent studies have found that O-glycosylation has a dual role in the eye. On one hand, its normal presence maintains ocular surface barrier function and retinal photoreceptor survival. On the other hand, aberrant O-glycosylation mediates the pathological processes of ocular diseases through activating signaling pathways and regulating gene expression. Moreover, the crosstalk between O-glycosylation and phosphorylation contributes to the complex molecular mechanisms underlying these pathologies. This review summarizes the physiological protection and pathological mechanisms of three types of O-glycosylation in the eye, and explores the therapeutic prospects for ocular diseases. It further envisions future integration with emerging technologies such as nanodelivery to provide targeted therapeutic strategies, facilitating the transition from theory to practice.
[中图分类号]
[基金项目]
内蒙古医学科学院公立医院科研联合基金科技项目(No.2024GLLH0086)