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Semaphorin 3f 对无长突细胞发生的空间调节

Spatial regulation of amacrine cell genesis by Semaphorin 3f.

机构信息

Department of Cell Biology and Anatomy, Hotchkiss Brain Institute, Alberta Children's Hospital Research Institute, University of Calgary, Calgary, Alberta, Canada.

Department of Cell Biology and Anatomy, Hotchkiss Brain Institute, Alberta Children's Hospital Research Institute, University of Calgary, Calgary, Alberta, Canada.

出版信息

Dev Biol. 2022 Nov;491:66-81. doi: 10.1016/j.ydbio.2022.08.008. Epub 2022 Sep 2.

Abstract

PURPOSE

The axonal projections of retinal ganglion cells (RGCs) of the eye are topographically organized so that spatial information from visual images is preserved. This retinotopic organization is established during development by secreted morphogens that pattern domains of transcription factor expression within naso-temporal and dorso-ventral quadrants of the embryonic eye. Poorly understood are the downstream signaling molecules that generate the topographically organized retinal cells and circuits. The secreted signaling molecule Semaphorin 3fa (Sema3fa) belongs to the Sema family of molecules that provide positional information to developing cells. Here, we test a role for Sema3fa in cell genesis of the temporal zebrafish retina.

METHODS

We compare retinal cell genesis in wild type and sema3fa CRISPR zebrafish mutants by in situ hybridization and immunohistochemistry.

RESULTS

We find that mRNAs for sema3fa and known receptors, neuropilin2b (nrp2b) and plexina1a (plxna1a), are expressed by progenitors of the temporal, but not nasal zebrafish embryonic retina. In the sema3fa embryo, initially the domains of expression for atoh7 and neurod4, transcription factors necessary for the specification of RGCs and amacrine cells, respectively, are disrupted. Yet, post-embryonically only amacrine cells of the temporal retina are reduced in numbers, with both GABAergic and glycinergic subtypes affected.

CONCLUSIONS

These data suggest that Sema3fa acts early on embryonic temporal progenitors to control in a spatially-dependent manner the production of amacrine cells, possibly to allow the establishment of neural circuits with domain-specific functions. We propose that spatially restricted extrinsic signals in the neural retina control cell genesis in a domain-dependent manner.

摘要

目的

眼睛的视网膜神经节细胞 (RGC) 的轴突投射呈拓扑组织,从而保留了来自视觉图像的空间信息。这种视网膜拓扑组织是通过在胚胎眼睛的鼻侧-颞侧和背侧-腹侧象限内表达转录因子的结构域来发育建立的。目前尚不清楚的是产生拓扑组织的视网膜细胞和回路的下游信号分子。分泌的信号分子 Semaphorin 3fa (Sema3fa) 属于 Sema 家族分子,该家族分子为发育中的细胞提供位置信息。在这里,我们测试 Sema3fa 在颞侧斑马鱼视网膜细胞发生中的作用。

方法

我们通过原位杂交和免疫组织化学比较野生型和 sema3fa CRISPR 斑马鱼突变体的视网膜细胞发生。

结果

我们发现,sema3fa 的 mRNA 及其已知的受体 neuropilin2b (nrp2b) 和 plexina1a (plxna1a),在颞侧但不在鼻侧的斑马鱼胚胎视网膜的祖细胞中表达。在 sema3fa 胚胎中,最初,转录因子 atoh7 和 neurod4 的表达域,分别为 RGC 和无长突细胞的特化所必需,被破坏。然而,胚胎后,只有颞侧视网膜的无长突细胞数量减少,GABA 能和甘氨酸能亚型均受影响。

结论

这些数据表明,Sema3fa 早期作用于胚胎颞侧祖细胞,以空间依赖的方式控制无长突细胞的产生,可能允许具有特定功能的域特异性神经回路的建立。我们提出,神经视网膜中空间限制的外在信号以域依赖的方式控制细胞发生。

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