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KIF11 的泛素样修饰作用维持光感受器纤毛的完整性和视网膜的内稳态。

KIF11 UFMylation Maintains Photoreceptor Cilium Integrity and Retinal Homeostasis.

机构信息

Center for Cell Structure and Function, Shandong Provincial Key Laboratory of Animal Resistance Biology, Haihe Laboratory of Cell Ecosystem, College of Life Sciences, Shandong Normal University, Jinan, 250014, China.

Department of Genetics and Cell Biology, State Key Laboratory of Medicinal Chemical Biology, College of Life Sciences, Nankai University, Tianjin, 300071, China.

出版信息

Adv Sci (Weinh). 2024 Jul;11(25):e2400569. doi: 10.1002/advs.202400569. Epub 2024 Apr 26.

Abstract

The photoreceptor cilium is vital for maintaining the structure and function of the retina. However, the molecular mechanisms underlying the photoreceptor cilium integrity and retinal homeostasis are largely unknown. Herein, it is shown that kinesin family member 11 (KIF11) localizes at the transition zone (connecting cilium) of the photoreceptor and plays a crucial role in orchestrating the cilium integrity. KIF11 depletion causes malformations of both the photoreceptor ciliary axoneme and membranous discs, resulting in photoreceptor degeneration and the accumulation of drusen-like deposits throughout the retina. Mechanistic studies show that the stability of KIF11 is regulated by an interplay between its UFMylation and ubiquitination; UFMylation of KIF11 at lysine 953 inhibits its ubiquitination by synoviolin 1 and thereby prevents its proteasomal degradation. The lysine 953-to-arginine mutant of KIF11 is more stable than wild-type KIF11 and also more effective in reversing the ciliary and retinal defects induced by KIF11 depletion. These findings identify a critical role for KIF11 UFMylation in the maintenance of photoreceptor cilium integrity and retinal homeostasis.

摘要

光感受器纤毛对于维持视网膜的结构和功能至关重要。然而,光感受器纤毛完整性和视网膜内稳态的分子机制在很大程度上尚不清楚。本文表明,驱动蛋白家族成员 11(KIF11)定位于光感受器的过渡区(连接纤毛),在协调纤毛完整性方面发挥着关键作用。KIF11 的缺失会导致光感受器纤毛轴丝和膜盘的畸形,从而导致光感受器变性和整个视网膜中出现类似 drusen 的沉积物积累。机制研究表明,KIF11 的稳定性受其泛素化和泛素化之间的相互作用调节;KIF11 赖氨酸 953 上的 UFMylation 抑制 synoviolin 1 对其泛素化,从而防止其蛋白酶体降解。KIF11 的赖氨酸 953 到精氨酸的突变比野生型 KIF11 更稳定,并且在逆转 KIF11 缺失引起的纤毛和视网膜缺陷方面更有效。这些发现确定了 KIF11 UFMylation 在维持光感受器纤毛完整性和视网膜内稳态中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b6/11220646/53796c756853/ADVS-11-2400569-g006.jpg

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