首页> 外文OA文献 >Transcription Profiling of Platelet-Derived Growth Factor-B-Deficient Mouse Embryos Identifies RGS5 as a Novel Marker for Pericytes and Vascular Smooth Muscle Cells
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Transcription Profiling of Platelet-Derived Growth Factor-B-Deficient Mouse Embryos Identifies RGS5 as a Novel Marker for Pericytes and Vascular Smooth Muscle Cells

机译:血小板衍生的生长因子-B缺陷小鼠胚胎的转录谱分析鉴定RGS5为周细胞和血管平滑肌细胞的新型标记

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摘要

All blood capillaries consist of endothelial tubes surrounded by mural cells referred to as pericytes. The origin, recruitment, and function of the pericytes is poorly understood, but the importance of these cells is underscored by the severe cardiovascular defects in mice genetically devoid of factors regulating pericyte recruitment to embryonic vessels, and by the association between pericyte loss and microangiopathy in diabetes mellitus. A general problem in the study of pericytes is the shortage of markers for these cells. To identify new markers for pericytes, we have taken advantage of the platelet-derived growth factor (PDGF)-B knockout mouse model, in which developing blood vessels in the central nervous system are almost completely devoid of pericytes. Using cDNA microarrays, we analyzed the gene expression in PDGF-B null embryos in comparison with corresponding wild-type embryos and searched for down-regulated genes. The most down-regulated gene present on our microarray was RGS5, a member of the RGS family of GTPase-activating proteins for G proteins. In situ hybridization identified RGS5 expression in brain pericytes, and in pericytes and vascular smooth muscle cells in certain other, but not all, locations. Absence of RGS5 expression in PDGF-B and PDGFRβ-null embryos correlated with pericyte loss in these mice. Residual RGS5 expression in rare pericytes suggested that RGS5 is a pericyte marker expressed independently of PDGF-B/Rβ signaling. With RGS5 as a proof-of-principle, our data demonstrate the usefulness of microarray analysis of mouse models for abnormal pericyte development in the identification of new pericyte-specific markers.
机译:所有的血液毛细血管都由被壁细胞包围的内皮管组成,这些壁细胞被称为周细胞。人们对周细胞的起源,募集和功能了解甚少,但这些小鼠的重要性却因小鼠遗传上的严重心血管缺陷而缺乏,这些小鼠在遗传上缺乏调节周细胞募集到胚胎血管的因素,以及周细胞丧失与微血管病变之间的联系。糖尿病。周细胞研究中的一个普遍问题是这些细胞标记物的缺乏。为了确定周细胞的新标记,我们利用了血小板衍生的生长因子(PDGF)-B基因敲除小鼠模型,其中中枢神经系统中发育中的血管几乎完全没有周细胞。使用cDNA微阵列,我们分析了PDGF-B空胚与相应的野生型胚相比的基因表达,并搜索了下调的基因。存在于我们的微阵列中最被下调的基因是RGS5,它是G蛋白的GTPase激活蛋白RGS家族的成员。原位杂交鉴定了RGS5在脑周细胞以及某些其他但不是全部位置的周细胞和血管平滑肌细胞中的表达。 PDGF-B和PDGFRβ-null胚胎中RGS5表达的缺乏与这些小鼠的周细胞丢失有关。稀有周细胞中残留的RGS5表达表明RGS5是独立于PDGF-B /Rβ信号传导表达的周细胞标记。以RGS5作为原理证明,我们的数据证明了用于异常周细胞发育的小鼠模型微阵列分析在鉴定新的周细胞特异性标记中的有用性。

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