周细胞
生物
血小板源性生长因子受体
PDGFRB公司
细胞生物学
微血管
壁细胞
磺酰脲受体
血管生成
生长因子
病理
受体
癌症研究
血管平滑肌
内皮干细胞
基因
遗传学
内分泌学
医学
蛋白质亚单位
体外
平滑肌
作者
Cecilia Bondjers,Liqun He,Minoru Takemoto,Jenny Norlin,Noomi Asker,Mats Hellström,Per Lindahl,Christer Betsholtz
标识
DOI:10.1096/fj.05-4944fje
摘要
Normal blood microvessels are lined by pericytes, which contribute to microvessel development and stability through mechanisms that are poorly understood. Pericyte deficiency has been implicated in the pathogenesis of microvascular abnormalities associated with diabetes and tumors. However, the unambiguous identification of pericytes is still a problem because of cellular heterogeneity and few available molecular markers. Here we describe an approach to identify pericyte markers based on transcription profiling of pericyte-deficient brain microvessels isolated from platelet-derived growth factor (PDGF-B)-/- and PDGF beta receptor (PDGFRbeta)-/- mouse mutants. The approach was validated by the identification of known pericyte markers among the most down-regulated genes in PDGF-B-/- and PDGFRbeta-/- microvessels. Of candidates for novel pericyte markers, we selected ATP-sensitive potassium-channel Kir6.1 (also known as Kcnj8) and sulfonylurea receptor 2, (SUR2, also known as Abcc9), both part of the same channel complex, as well as delta homologue 1 (DLK1) for in situ hybridization, which demonstrated their specific expression in brain pericytes of mouse embryos. We also show that Kir6.1 is highly expressed in pericytes in brain but undetectable in pericytes in skin and heart. The three new brain pericyte markers are signaling molecules implicated in ion transport and intercellular signaling, potentially opening new windows on pericyte function in brain microvessels.
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