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( )是视网膜色素上皮发育的关键早期调节因子。

( ) is a critical early regulator of retinal pigment epithelial development.

作者信息

Brinkmeier Michelle L, Wang Su Qing, Pittman Hannah, Cheung Leonard Y, Prasov Lev

出版信息

bioRxiv. 2024 Apr 29:2024.04.26.591281. doi: 10.1101/2024.04.26.591281.

Abstract

UNLABELLED

Myelin regulatory factor (Myrf) is a critical transcription factor in early retinal and retinal pigment epithelial development, and human variants in are a cause for nanophthalmos. Single cell RNA sequencing (scRNAseq) was performed on conditional knockout mice ( ) at 3 developmental timepoints. was expressed specifically in the RPE, and expression was abrogated in eyes. scRNAseq analysis revealed a loss of RPE cells at all timepoints resulting from cell death. GO-term analysis in the RPE revealed downregulation of melanogenesis and anatomic structure morphogenesis pathways, which were supported by electron microscopy and histologic analysis. Novel structural target genes including and , along with macular degeneration and inherited retinal disease genes were identified as downregulated, and a strong upregulation of TGFß/BMP signaling and effectors was observed. Regulon analysis placed downstream of and and upstream of in RPE differentiation. Together, these results suggest a strong role for Myrf in the RPE maturation by regulating melanogenesis, cell survival, and cell structure, in part acting through suppression of TGFß signaling and activation of .

SUMMARY STATEMENT

regulates RPE development, melanogenesis, and is important for cell structure and survival, in part through regulation of , and and BMP/TGFb signaling.

摘要

未标记

髓磷脂调节因子(Myrf)是视网膜和视网膜色素上皮早期发育中的关键转录因子,其人类变体是小眼球症的病因。在3个发育时间点对条件性敲除小鼠( )进行了单细胞RNA测序(scRNAseq)。 在视网膜色素上皮中特异性表达,在 眼中表达被消除。scRNAseq分析显示,在所有时间点,由于细胞死亡,视网膜色素上皮细胞均减少。对视网膜色素上皮的基因本体(GO)术语分析显示,黑色素生成和解剖结构形态发生途径下调,这得到了电子显微镜和组织学分析的支持。包括 和 在内的新型结构靶基因以及黄斑变性和遗传性视网膜疾病基因被确定为下调,并且观察到TGFß/BMP信号传导及其效应物的强烈上调。调控子分析表明,在视网膜色素上皮分化过程中, 位于 和 下游, 上游。总之,这些结果表明,Myrf在视网膜色素上皮成熟过程中通过调节黑色素生成、细胞存活和细胞结构发挥重要作用,部分是通过抑制TGFß信号传导和激活 来实现的。

总结陈述

调节视网膜色素上皮发育、黑色素生成,对细胞结构和存活很重要,部分是通过调节 、 和 以及BMP/TGFb信号传导来实现的。

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