Department of Ophthalmology, Baylor College of Medicine, Houston, TX, United States.
Department of Neuroscience, Baylor College of Medicine, Houston, TX, United States.
Front Neural Circuits. 2021 Feb 10;15:635849. doi: 10.3389/fncir.2021.635849. eCollection 2021.
Neural circuit formation is an intricate and complex process where multiple neuron types must come together to form synaptic connections at a precise location and time. How this process is orchestrated during development remains poorly understood. Cell adhesion molecules are known to play a pivotal role in assembling neural circuits. They serve as recognition molecules between corresponding synaptic partners. In this study, we identified a new player in assembling neural circuits in the outer retina, the L1-family cell adhesion molecule Neurofascin (Nfasc). Our data reveals Nfasc is expressed in the synaptic layer where photoreceptors make synaptic connections to their respective partners. A closer examination of Nfasc expression shows high levels of expression in rod bipolars but not in cone bipolars. Disruption of Nfasc using a conditional knockout allele results in selective loss of pre- and post-synaptic proteins in the rod synaptic layer but not in the cone synaptic layer. Electron microscopic analysis confirms that indeed there are abnormal synaptic structures with less dendrites of rod bipolars innervating rod terminals in loss of Nfasc animals. Consistent with these findings, we also observe a decrease in rod-driven retinal responses with disruption of Nfasc function but not in cone-driven responses. Taken together, our data suggest a new role of Nfasc in rod synapses within the mouse outer retina.
神经回路的形成是一个复杂而精细的过程,在此过程中,多种神经元类型必须在特定的位置和时间聚集在一起,形成突触连接。这一过程在发育过程中是如何协调的,目前仍知之甚少。细胞黏附分子在组装神经回路中起着至关重要的作用。它们是相应突触伙伴之间的识别分子。在这项研究中,我们鉴定出了外视网膜神经回路组装中的一个新成员,即 L1 家族细胞黏附分子神经束蛋白(Neurofascin,Nfasc)。我们的数据表明,Nfasc 在外节中表达,而光感受器在此处与各自的突触伙伴形成突触连接。对 Nfasc 表达的进一步研究表明,它在外节中高表达,而在视锥双极细胞中低表达。使用条件性敲除等位基因破坏 Nfasc 的表达,会导致 rod 突触层中的前突触和后突触蛋白选择性丢失,但在 cone 突触层中则不会。电子显微镜分析证实,在 Nfasc 缺失的动物中,确实存在 rod 双极细胞的树突与 rod 终末之间异常的突触结构,树突数量减少。与这些发现一致的是,我们还观察到,Nfasc 功能的破坏会导致 rod 驱动的视网膜反应减少,但不会导致 cone 驱动的反应减少。总之,我们的数据表明,Nfasc 在小鼠外视网膜的 rod 突触中发挥了新的作用。