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Transcriptome analysis of the zebrafish atoh7−/− Mutant lakritz highlights Atoh7‐dependent genetic networks with potential implications for human eye diseases

机译:对斑马鱼atoh7-/-Mutant的转录组分析lakritz强调了依赖Atoh7的遗传网络对人眼疾病有潜在影响

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摘要

Expression of the bHLH transcription protein Atoh7 is a crucial factor conferring competence to retinal progenitor cells for the development of retinal ganglion cells. Several studies have emerged establishing as a retinal disease gene. Remarkably, such studies uncovered variants associated with global eye defects including optic nerve hypoplasia, microphthalmia, retinal vascular disorders, and glaucoma. The complex genetic networks and cellular decisions arising downstream of expression, and how their dysregulation cause development of such disease traits remains unknown. To begin to understand such Atoh7‐dependent events in vivo, we performed transcriptome analysis of wild‐type and mutant ( ) zebrafish embryos at the onset of retinal ganglion cell differentiation. We investigated in silico interplays of and other disease‐related genes and pathways. By network reconstruction analysis of differentially expressed genes, we identified gene clusters enriched in retinal development, cell cycle, chromatin remodeling, stress response, and Wnt pathways. By weighted gene coexpression network, we identified coexpression modules affected by the mutation and enriched in retina development genes tightly connected to . We established the groundwork whereby Atoh7‐linked cellular and molecular processes can be investigated in the dynamic multi‐tissue environment of the developing normal and diseased vertebrate eye.
机译:bHLH转录蛋白Atoh7的表达是赋予视网膜祖细胞竞争视网膜神经节细胞能力的关键因素。建立了作为视网膜疾病基因的几项研究已经出现。值得注意的是,此类研究发现了与整体眼部缺陷相关的变体,包括视神经发育不全,小眼症,视网膜血管疾病和青光眼。表达下游出现的复杂遗传网络和细胞决定,以及它们的失调如何导致此类疾病性状的发展仍然未知。为了开始了解体内这种依赖Atoh7的事件,我们在视网膜神经节细胞分化开始时对野生型和突变()斑马鱼胚胎进行了转录组分析。我们调查了与其他疾病相关的基因和途径的计算机相互作用。通过差异表达基因的网络重建分析,我们确定了丰富的视网膜发育,细胞周期,染色质重塑,应激反​​应和Wnt途径的基因簇。通过加权基因共表达网络,我们确定了受突变影响的共表达模块,并富集了紧密连接的视网膜发育基因。我们建立了基础,可以在发育中的正常和患病脊椎动物眼的动态多组织环境中研究Atoh7连接的细胞和分子过程。

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