首页> 外文期刊>Circulation research: a journal of the American Heart Association >Platelet-derived growth factor receptor beta signaling is required for efficient epicardial cell migration and development of two distinct coronary vascular smooth muscle cell populations.
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Platelet-derived growth factor receptor beta signaling is required for efficient epicardial cell migration and development of two distinct coronary vascular smooth muscle cell populations.

机译:有效的心外膜细胞迁移和两个不同的冠状动脉平滑肌细胞群的发育需要血小板衍生的生长因子受体β信号。

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The epicardium plays an essential role in coronary artery formation and myocardial development, but signals controlling the development and differentiation of this tissue are not well understood. To investigate the role of platelet-derived growth factor receptor (PDGFR)beta in development of epicardial-derived vascular smooth muscle cells (VSMCs), we examined PDGFRbeta(-/-) and PDGFRbeta epicardial mutant hearts. We found that PDGFRbeta(-/-) hearts failed to form dominant coronary vessels on the ventral heart surface, had a thinned myocardium, and completely lacked coronary VSMCs (cVSMCs). This constellation of defects was consistent with a primary defect in the epicardium. To verify that these defects were specific to epicardial derivatives, we generated mice with an epicardial deletion of PDGFRbeta that resulted in reduced cVSMCs distal to the aorta. The regional absence of cVSMCs suggested that cVSMCs could arise from 2 sources, epicardial and nonepicardial, and that both were dependent on PDGFRbeta. In the absence of PDGFRbeta signaling, epicardial cells adopted an irregular actin cytoskeleton, leading to aberrant migration of epicardial cells into the myocardium in vivo. In addition, PDGF receptor stimulation promoted epicardial cell migration, and PDGFRbeta-driven phosphoinositide 3'-kinase signaling was critical for this process. Our data demonstrate that PDGFRbeta is required for the formation of 2 distinct cVSMC populations and that loss of PDGFRbeta-PI3K signaling disrupts epicardial cell migration.
机译:心外膜在冠状动脉的形成和心肌的发育中起着至关重要的作用,但是控制该组织的发育和分化的信号尚不清楚。若要调查血小板源性生长因子受体(PDGFR)β在心外膜源性血管平滑肌细胞(VSMC)发育中的作用,我们检查了PDGFRbeta(-/-)和PDGFRbeta心外膜突变体心脏。我们发现PDGFRbeta(-/-)心脏未能在腹侧心脏表面形成优势的冠状血管,心肌变薄,并且完全缺乏冠状VSMC(cVSMC)。这种缺陷群与心外膜的主要缺陷相一致。为了验证这些缺陷是心外膜衍生物所特有的,我们制备了具有心外膜缺失PDGFRbeta的小鼠,该小鼠导致主动脉远端cVSMC减少。 cVSMCs的区域性缺乏表明cVSMCs可能来自心外膜和非心外膜两种来源,并且两者均依赖于PDGFRbeta。在没有PDGFRbeta信号传导的情况下,心外膜细胞采用了不规则的肌动蛋白细胞骨架,导致心外膜细胞在体内异常迁移到心肌中。此外,PDGF受体刺激促进心外膜细胞迁移,并且PDGFRbeta驱动的磷酸肌醇3'激酶信号传导对此过程至关重要。我们的数据表明,PDGFRbeta是形成2个不同的cVSMC群体所必需的,并且PDGFRbeta-PI3K信号传导的丧失破坏了心外膜细胞的迁移。

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