Department of Ophthalmology and Visual Sciences, University of Wisconsin-Madison, Madison, Wisconsin, USA; email:
McPherson Eye Research Institute, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Annu Rev Vis Sci. 2024 Sep;10(1):377-402. doi: 10.1146/annurev-vision-102122-105721.
Synapse formation within the retinal circuit ensures that distinct neuronal types can communicate efficiently to process visual signals. Synapses thus form the core of the visual computations performed by the retinal circuit. Retinal synapses are diverse but can be broadly categorized into multipartner ribbon synapses and 1:1 conventional synapses. In this article, we review our current understanding of the cellular and molecular mechanisms that regulate the functional establishment of mammalian retinal synapses, including the role of adhesion proteins, synaptic proteins, extracellular matrix and cytoskeletal-associated proteins, and activity-dependent cues. We outline future directions and areas of research that will expand our knowledge of these mechanisms. Understanding the regulators moderating synapse formation and function not only reveals the integrated developmental processes that establish retinal circuits, but also divulges the identity of mechanisms that could be engaged during disease and degeneration.
视网膜回路中的突触形成确保了不同的神经元类型能够有效地进行通信,从而处理视觉信号。因此,突触构成了视网膜回路进行视觉计算的核心。视网膜突触多种多样,但可以大致分为多伙伴带突触和 1:1 传统突触。本文综述了我们目前对调节哺乳动物视网膜突触功能建立的细胞和分子机制的理解,包括黏附蛋白、突触蛋白、细胞外基质和细胞骨架相关蛋白以及活动依赖性线索的作用。本文概述了未来的研究方向和领域,这些将扩展我们对这些机制的认识。了解调节突触形成和功能的调节剂不仅揭示了建立视网膜回路的综合发育过程,还揭示了在疾病和退化过程中可能涉及的机制的特性。