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Systems-wide analysis unravels the new roles of CCM signal complex (CSC)

机译:系统范围的分析揭示了CCM信号复合体(CSC)的新作用

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摘要

Cerebral cavernous malformations (CCMs) are characterized by abnormally dilated intracranial capillaries that result in increased susceptibility to stroke. Three genes have been identified as causes of CCMs; KRIT1 (CCM1), MGC4607 (CCM2) and PDCD10 (CCM3); one of them is disrupted in most CCM cases. It was demonstrated that both CCM1 and CCM3 bind to CCM2 to form a CCM signaling complex (CSC) to modulate angiogenesis. In this report, we deployed both RNA-seq and proteomic analysis of perturbed CSC after depletion of one of three CCM genes to generate interactomes for system-wide studies. Our results demonstrated a unique portrait detailing alterations in angiogenesis and vascular integrity. Interestingly, only in-direct overlapped alterations between RNA and protein levels were detected, supporting the existence of multiple layers of regulation in CSC cascades. Notably, this is the first report identifying that both β4 integrin and CAV1 signaling are downstream of CSC, conveying the angiogenic signaling. Our results provide a global view of signal transduction modulated by the CSC, identifies novel regulatory signaling networks and key cellular factors associated with CSC.
机译:脑海绵状畸形(CCM)的特征是颅内毛细血管扩张异常,导致中风的敏感性增加。已经确定了三个基因是引起CCM的原因。 KRIT1(CCM1),MGC4607(CCM2)和PDCD10(CCM3);在大多数CCM案例中,其中之一被打乱了。结果表明,CCM1和CCM3均与CCM2结合形成CCM信号复合物(CSC),以调节血管生成。在本报告中,我们在耗尽三个CCM基因之一以生成用于整个系统研究的相互作用组后,对受干扰的CSC进行了RNA-seq和蛋白质组学分析。我们的结果显示出独特的肖像,详细描述了血管生成和血管完整性的变化。有趣的是,仅检测到RNA和蛋白质水平之间的间接重叠变化,支持CSC级联反应中存在多层调控。值得注意的是,这是第一个鉴定β4整联蛋白和CAV1信号均在CSC下游,传达血管生成信号的报告。我们的结果提供了由CSC调制的信号转导的全球视野,确定了新型调控信号网络和与CSC相关的关键细胞因子。

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