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首页> 外文期刊>Cell >Norrin, Frizzled-4, and Lrp5 Signaling in Endothelial Cells Controls a Genetic Program for Retinal Vascularization
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Norrin, Frizzled-4, and Lrp5 Signaling in Endothelial Cells Controls a Genetic Program for Retinal Vascularization

机译:内皮细胞中的Norrin,Frizzled-4和Lrp5信号控制视网膜血管化的遗传程序。

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摘要

Disorders of vascular structure and function play a central role in a wide variety of CNS diseases. Mutations in the Frizzled-4 (Fz4) receptor, Lrp5 coreceptor, or Norrin ligand cause retinal hypovascularization, but the mechanisms by which Norrin/Fz4/Lrp signaling controls vascular development have not been defined. Using mouse genetic and cell culture models, we show that loss of Fz4 signaling in endothelial cells causes defective vascular growth, which leads to chronic but reversible silencing of retinal neurons. Loss of Fz4 in all endothelial cells disrupts the blood brain barrier in the cerebellum, whereas excessive Fz4 signaling disrupts embryonic angiogenesis. Sox17, a transcription factor that is upregulated by Norrin/Fz4/Lrp signaling, plays a central role in inducing the angiogenic program controlled by Norrin/Fz4/Lrp. These experiments establish a cellular basis for retinal hypovascularization diseases due to insufficient Frizzled signaling, and they suggest a broader role for Frizzled signaling in vascular growth, remodeling, maintenance, and disease.
机译:血管结构和功能障碍在多种中枢神经系统疾病中起着核心作用。在Frizzled-4(Fz4)受体,Lrp5受体或Norrin配体中的突变会引起视网膜血管生成不足,但尚未定义Norrin / Fz4 / Lrp信号传导控制血管发育的机制。使用小鼠遗传和细胞培养模型,我们显示内皮细胞中Fz4信号的丢失导致有缺陷的血管生长,从而导致视网膜神经元发生慢性但可逆的沉默。所有内皮细胞中Fz4的缺失都会破坏小脑的血脑屏障,而过多的Fz4信号则会破坏胚胎的血管生成。 Sox17是受Norrin / Fz4 / Lrp信号转导上调的转录因子,在诱导受Norrin / Fz4 / Lrp控制的血管生成程序中起着核心作用。这些实验为由于卷曲信号不足而引起的视网膜血管减少疾病奠定了细胞基础,并且它们表明卷曲信号在血管生长,重塑,维持和疾病中具有更广泛的作用。

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