Developmental Neurobiology Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan.
Elife. 2022 Mar 22;11:e74650. doi: 10.7554/eLife.74650.
In the vertebrate retina, an interplay between retinal ganglion cells (RGCs), amacrine (AC), and bipolar (BP) cells establishes a synaptic layer called the inner plexiform layer (IPL). This circuit conveys signals from photoreceptors to visual centers in the brain. However, the molecular mechanisms involved in its development remain poorly understood. Striatin-interacting protein 1 (Strip1) is a core component of the striatin-interacting phosphatases and kinases (STRIPAK) complex, and it has shown emerging roles in embryonic morphogenesis. Here, we uncover the importance of Strip1 in inner retina development. Using zebrafish, we show that loss of Strip1 causes defects in IPL formation. In mutants, RGCs undergo dramatic cell death shortly after birth. AC and BP cells subsequently invade the degenerating RGC layer, leading to a disorganized IPL. Mechanistically, zebrafish Strip1 interacts with its STRIPAK partner, Striatin 3 (Strn3), and both show overlapping functions in RGC survival. Furthermore, loss of Strip1 or Strn3 leads to activation of the proapoptotic marker, Jun, within RGCs, and Jun knockdown rescues RGC survival in mutants. In addition to its function in RGC maintenance, Strip1 is required for RGC dendritic patterning, which likely contributes to proper IPL formation. Taken together, we propose that a series of Strip1-mediated regulatory events coordinates inner retinal circuit formation by maintaining RGCs during development, which ensures proper positioning and neurite patterning of inner retinal neurons.
在脊椎动物视网膜中,视网膜神经节细胞(RGCs)、无长突细胞(AC)和双极细胞(BP)之间的相互作用建立了一个称为内丛状层(IPL)的突触层。这个回路将信号从光感受器传递到大脑中的视觉中枢。然而,其发育过程中涉及的分子机制仍知之甚少。Striatin 相互作用蛋白 1(Strip1)是 Striatin 相互作用磷酸酶和激酶(STRIPAK)复合物的核心组成部分,它在胚胎形态发生中表现出新兴的作用。在这里,我们揭示了 Strip1 在视网膜内层发育中的重要性。使用斑马鱼,我们发现 Strip1 的缺失会导致 IPL 形成缺陷。在 突变体中,RGCs 在出生后不久就会发生剧烈的细胞死亡。AC 和 BP 细胞随后会侵入退化的 RGC 层,导致 IPL 排列紊乱。从机制上讲,斑马鱼 Strip1 与它的 STRIPAK 伴侣 Striatin 3(Strn3)相互作用,并且两者在 RGC 存活中表现出重叠的功能。此外,缺失 Strip1 或 Strn3 会导致 RGC 中促凋亡标志物 Jun 的激活,而在 突变体中,Jun 的敲低可挽救 RGC 的存活。除了在 RGC 维持中的作用外,Strip1 还需要 RGC 树突模式形成,这可能有助于 IPL 的正确形成。总之,我们提出一系列由 Strip1 介导的调节事件通过在发育过程中维持 RGC 来协调内视网膜回路的形成,从而确保内视网膜神经元的正确定位和神经突模式形成。