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微小RNA-126-5p通过调控神经元中的SetD5促进视网膜内皮细胞存活。

miR-126-5p promotes retinal endothelial cell survival through SetD5 regulation in neurons.

作者信息

Villain Gaëlle, Poissonnier Loïc, Noueihed Baraa, Bonfils Gaëlle, Rivera Jose Carlos, Chemtob Sylvain, Soncin Fabrice, Mattot Virginie

机构信息

University of Lille, CNRS, Institut Pasteur de Lille, UMR 8161 - M3T - Mechanisms of Tumorigenesis and Target Therapies, F-59000 Lille, France.

Department of Pediatrics, Ophthalmology, and Pharmacology, CHU Sainte-Justine Research Center, Université de Montréal, Montréal, H1T 2M4 Québec, Canada.

出版信息

Development. 2018 Jan 8;145(1):dev156232. doi: 10.1242/dev.156232.

Abstract

MicroRNAs are key regulators of angiogenesis, as illustrated by the vascular defects observed in miR-126-deficient animals. The miR-126 duplex gives rise to two mature microRNAs (miR-126-3p and -5p). The vascular defects in these mutant animals were attributed to the loss of miR-126-3p but the role of miR-126-5p during normal angiogenesis remains unknown. Here, we show that miR-126-5p is expressed in endothelial cells but also by retinal ganglion cells (RGCs) of the mouse postnatal retina and participates in protecting endothelial cells from apoptosis during the establishment of the retinal vasculature. miR-126-5p negatively controls class 3 semaphorin protein (Sema3A) in RGCs through the repression of SetD5, an uncharacterized member of the methyltransferase family of proteins. , SetD5 controls Sema3A expression independently of its SET domain and co-immunoprecipitates with BRD2, a bromodomain protein that recruits transcription regulators onto the chromatin. Both SetD5 and BRD2 bind to the transcription start site and to upstream promoter regions of the locus and BRD2 is necessary for the regulation of Sema3A expression by SetD5. Thus, neuronally expressed miR-126-5p regulates angiogenesis by protecting endothelial cells of the developing retinal vasculature from apoptosis.

摘要

微小RNA是血管生成的关键调节因子,这在miR - 126缺陷动物中观察到的血管缺陷中得到了体现。miR - 126双链体产生两种成熟的微小RNA(miR - 126 - 3p和 - 5p)。这些突变动物中的血管缺陷归因于miR - 126 - 3p的缺失,但miR - 126 - 5p在正常血管生成过程中的作用仍然未知。在这里,我们表明miR - 126 - 5p不仅在内皮细胞中表达,在小鼠出生后视网膜的视网膜神经节细胞(RGCs)中也有表达,并在视网膜血管系统建立过程中参与保护内皮细胞免于凋亡。miR - 126 - 5p通过抑制SetD5(一种未被表征的甲基转移酶家族蛋白成员)来负向调控RGCs中的3类信号素蛋白(Sema3A)。SetD5独立于其SET结构域控制Sema3A的表达,并与BRD2(一种将转录调节因子募集到染色质上的溴结构域蛋白)进行共免疫沉淀。SetD5和BRD2都与该基因座的转录起始位点和上游启动子区域结合,并且BRD2是SetD5调节Sema3A表达所必需的。因此,神经元表达的miR - 126 - 5p通过保护发育中的视网膜血管系统的内皮细胞免于凋亡来调节血管生成。

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