Maruyama Takuma, Ishii Toshiyuki, Kaneda Makoto
Department of Physiology, Graduate School of Medicine, Nippon Medical School, Tokyo, Japan.
Front Cell Neurosci. 2023 May 24;17:1173579. doi: 10.3389/fncel.2023.1173579. eCollection 2023.
Although gap junctional coupling in the developing retina is important for the maturation of neuronal networks, its role in the development of individual neurons remains unclear. Therefore, we herein investigated whether gap junctional coupling by starburst amacrine cells (SACs), a key neuron for the formation of direction selectivity, occurs during the developmental stage in the mouse retina. Neurobiotin-injected SACs coupled with many neighboring cells before eye-opening. The majority of tracer-coupled cells were retinal ganglion cells, and tracer coupling was not detected between SACs. The number of tracer-coupled cells significantly decreased after eye-opening and mostly disappeared by postnatal day 28 (P28). Membrane capacitance (Cm), an indicator of the formation of electrical coupling with gap junctions, was larger in SACs before than after eye-opening. The application of meclofenamic acid, a gap junction blocker, reduced the Cm of SACs. Gap junctional coupling by SACs was regulated by dopamine D1 receptors before eye-opening. In contrast, the reduction in gap junctional coupling after eye-opening was not affected by visual experience. At the mRNA level, 4 subtypes of connexins (23, 36, 43, and 45) were detected in SACs before eye-opening. Connexin 43 expression levels significantly decreased after eye-opening. These results indicate that gap junctional coupling by SACs occurs during the developmental period and suggest that the elimination of gap junctions proceeds with the innate system.
尽管发育中的视网膜中的缝隙连接耦合对于神经网络的成熟很重要,但其在单个神经元发育中的作用仍不清楚。因此,我们在此研究了作为方向选择性形成关键神经元的星爆无长突细胞(SACs)的缝隙连接耦合是否在小鼠视网膜发育阶段发生。注射神经生物素的SACs在睁眼之前与许多相邻细胞耦合。大多数示踪剂耦合细胞是视网膜神经节细胞,并且在SACs之间未检测到示踪剂耦合。睁眼后,示踪剂耦合细胞的数量显著减少,到出生后第28天(P28)大多消失。膜电容(Cm)是与缝隙连接形成电耦合的指标,睁眼之前SACs中的膜电容大于睁眼之后。缝隙连接阻滞剂甲氯芬那酸的应用降低了SACs的Cm。睁眼之前,SACs的缝隙连接耦合受多巴胺D1受体调节。相反,睁眼后缝隙连接耦合的减少不受视觉经验影响。在mRNA水平,睁眼之前在SACs中检测到4种连接蛋白亚型(23、36、43和45)。睁眼后连接蛋白43的表达水平显著降低。这些结果表明,SACs的缝隙连接耦合发生在发育时期,并表明缝隙连接的消除是随着先天系统进行的。