Pacwa Anna, Mroz Klaudia, Liu Xiaonan, Smedowski Adrian
Department of Opthalmology Faculty of Medical Sciences in Katowice The Laboratory for Translational Research in Ophthalmology Medical University of Silesia Katowice Poland.
GlaucoTech Co Katowice Poland.
J Cell Commun Signal. 2025 Sep 3;19(3):e70036. doi: 10.1002/ccs3.70036. eCollection 2025 Sep.
Gap junctions are essential channels of communication between cells including neurons in the central nervous system. These channels coordinate cell metabolic and electrical functions including such crucial ones for maintaining homeostasis as cell proliferation, differentiation, survival, and apoptosis. They create narrow passageways that allow rapid exchange of small molecules, ions, and secondary messengers between neighboring cells including the retina and optic nerve. Disruption in normal functioning of gap junctions may result in various neurodegenerative disorders. A comprehensive understanding of gap junction composition, function, and regulation is the key in determining novel approaches to neuroprotection and neuroregeneration. Here, we review the structure and the role of gap junctions in the retina and discuss the life cycle of connexins and their involvement in retinal neurodegenerations.
缝隙连接是包括中枢神经系统神经元在内的细胞间重要的通讯通道。这些通道协调细胞的代谢和电功能,包括对维持体内平衡至关重要的细胞增殖、分化、存活和凋亡等功能。它们形成狭窄的通道,使小分子、离子和第二信使在包括视网膜和视神经在内的相邻细胞之间快速交换。缝隙连接正常功能的破坏可能导致各种神经退行性疾病。全面了解缝隙连接的组成、功能和调节是确定神经保护和神经再生新方法的关键。在此,我们综述缝隙连接在视网膜中的结构和作用,并讨论连接蛋白的生命周期及其在视网膜神经退行性变中的作用。