Soto Florentina, Lin Chin-I, Jo Andrew, Chou Ssu-Yu, Harding Ellen G, Ruzycki Philip A, Seabold Gail K, Petralia Ronald S, Kerschensteiner Daniel
Department of Ophthalmology and Visual Sciences, Washington University School of Medicine, St. Louis, MO, USA.
Graduate Program in Neuroscience, Division of Biological & Biomedical Sciences, Washington University School of Medicine, St. Louis, MO, USA.
Nat Commun. 2025 Apr 18;16(1):3708. doi: 10.1038/s41467-025-59046-0.
Parallel ON and OFF (positive- and negative-contrast) pathways fundamental to vision arise at the complex synapse of cone photoreceptors. Cone pedicles form spatially segregated functionally opposite connections with ON and OFF bipolar cells. Here, we discover that mammalian cones express LRFN2, a cell-adhesion molecule, which localizes to the pedicle base. LRFN2 stabilizes basal contacts between cone pedicles and OFF bipolar cell dendrites to guide pathway-specific partner choices, encompassing multiple cell types. In addition, LRFN2 trans-synaptically organizes glutamate receptor clusters, determining the contrast preferences of the OFF pathway. ON and OFF pathways converge in the inner retina to regulate bipolar cell outputs. We analyze LRFN2's contributions to ON-OFF interactions, pathway asymmetries, and neural and behavioral responses to approaching predators. Our results reveal that LRFN2 controls the formation of the OFF pathway in vision, supports parallel processing in a single synapse, and shapes contrast coding and the detection of visual threats.
视觉的基础并行开和关(正和负对比度)通路起源于视锥光感受器的复杂突触。视锥细胞的突触小体与开和关双极细胞形成空间上分离的功能相反的连接。在这里,我们发现哺乳动物的视锥细胞表达LRFN2,一种细胞粘附分子,它定位于突触小体基部。LRFN2稳定视锥细胞突触小体与关双极细胞树突之间的基部接触,以指导包括多种细胞类型的通路特异性伙伴选择。此外,LRFN2跨突触组织谷氨酸受体簇,决定关通路的对比度偏好。开和关通路在内侧视网膜汇聚以调节双极细胞的输出。我们分析了LRFN2对开 - 关相互作用、通路不对称以及对接近捕食者的神经和行为反应的贡献。我们的结果表明,LRFN2控制视觉中关通路的形成,支持单个突触中的并行处理,并塑造对比度编码和视觉威胁检测。