Health & Life Sciences, Applied Sciences, Northumbria University, Newcastle upon Tyne, UK.
Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.
J Anat. 2023 Aug;243(2):258-264. doi: 10.1111/joa.13651. Epub 2022 Mar 21.
Chemical and electrical synapses (gap junctions) are widely prevalent in the nervous system. Gap junctions emerge long before chemical synapses, allowing communication between developing cells, and are thought to be involved in establishing neural circuits. Mounting evidence indicates that these two modalities of synaptic transmission closely interact during retinal development and that such interactions play a critical role in synaptogenesis and circuit formation during the perinatal period. In vertebrates, gap junctions consist of two connexins which in turn are made up of six connexins (Cx). To what extent Cx45 and Cx36, the most abundant connexins in the retina, are involved in synaptogenesis and retinal circuit formation is not known. The here presented immunohistochemical study used stainings of Cx45, Cx36 and Synaptophysin in the outer and inner (IPL) plexiform layers of postnatal day 8-16 mice retinas to shed light on the role of connexins during critical neuronal developmental processes. Cx45 and Cx36 expressions in both plexiform layers of the mouse retina increased till eye opening and dropped afterwards. The percentage of heterotypic Cx45/Cx36 gap junctions is also higher before the critical event of eye opening. Finally, Cx45 is closely located and/or colocalized with Synaptophysin also shortly before eye opening in the IPL of the mouse retina. All findings point towards a pivotal role for Cx45 during postnatal synaptogenesis in the mouse retina. However, a more functional study is needed to determine the role of Cx45 during synaptogenesis and circuit formation.
化学突触和电突触(缝隙连接)广泛存在于神经系统中。缝隙连接在化学突触出现之前就已经存在,允许发育中的细胞之间进行通信,并且被认为参与了神经网络的建立。越来越多的证据表明,这两种突触传递方式在视网膜发育过程中密切相互作用,并且这种相互作用在围产期的突触发生和回路形成中起着关键作用。在脊椎动物中,缝隙连接由两个连接蛋白组成,而连接蛋白又由六个连接蛋白(Cx)组成。在视网膜中含量最丰富的 Cx45 和 Cx36 参与突触发生和视网膜回路形成的程度尚不清楚。本研究采用 Cx45、Cx36 和突触小体蛋白在出生后 8-16 天小鼠视网膜外和内(IPL)神经丛层的免疫组织化学染色,以阐明连接蛋白在关键神经元发育过程中的作用。Cx45 和 Cx36 在小鼠视网膜的两个神经丛层中的表达在睁眼前增加,之后下降。异质型 Cx45/Cx36 缝隙连接的百分比在睁眼的关键事件之前也更高。最后,在小鼠视网膜 IPL 中,Cx45 也在睁眼前与突触小体蛋白密切接近和/或共定位。所有发现都指向 Cx45 在小鼠视网膜出生后突触发生过程中的关键作用。然而,需要更功能的研究来确定 Cx45 在突触发生和回路形成中的作用。