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首页> 外文期刊>Journal of neurology >Concepts and hypothesis: Integrin cytoplasmic domain-associated protein-1 (ICAP-1) as a potential player in cerebral cavernous malformation
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Concepts and hypothesis: Integrin cytoplasmic domain-associated protein-1 (ICAP-1) as a potential player in cerebral cavernous malformation

机译:概念和假设:整合素胞质域相关蛋白1(ICAP-1)是脑海绵状畸形的潜在参与者

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摘要

Cerebral cavernous malformation (CCM) is a common vascular disease in central nervous system that frequently predisposes to stroke, seizure, and cerebral hemorrhage. CCM lesions are characterized by dilated and leaky intracranial capillaries composed of a thin layer of vascular endothelial cells with abnormal subendothelial extracellular matrix. Despite the understanding that genetic mutation of three CCM genes (CCM1, CCM2, and CCM3) results in hereditary CCM, the molecular mechanism underlying vascular defects in CCM lesions remains poorly understood. Recent studies have shown that integrin cytoplasmic domain-associated protein-1 (ICAP-1, also known as integrin β1 binding protein1, ITGB1BP), a cytoplasmic protein interacting with both β1 integrin subunit and CCM1 protein (also known as Krit1), is implicated in vascular development. Analysis of data on the biochemistry and cellular biology of ICAP-1 highlights that bidirectional interaction of ICAP-1 with CCM1 and integrin might regulate diverse pathological processes of CCM disorder. Specifically, emerging evidence supports the hypothesized involvement of ICAP-1 in CCM pathogenesis through its significant effect in attenuating excessive vascular growth, its indispensable function in activating CCM1 protein, and its essential role in regulating integrin functions.
机译:脑海绵状畸形(CCM)是中枢神经系统中常见的血管疾病,通常易导致中风,癫痫发作和脑出血。 CCM病变的特征是颅内毛细血管扩张和渗漏,由血管内皮细胞薄层和异常的内皮下细胞外基质组成。尽管了解到三个CCM基因(CCM1,CCM2和CCM3)的基因突变会导致遗传性CCM,但对CCM病变中血管缺损的分子机制仍知之甚少。最近的研究表明,涉及整联蛋白胞质域相关蛋白1(ICAP-1,也称为整联蛋白β1结合蛋白1,ITGB1BP),一种与β1整联蛋白亚基和CCM1蛋白(也称为Krit1)相互作用的胞质蛋白。在血管发育中。 ICAP-1的生化和细胞生物学数据分析表明,ICAP-1与CCM1和整联蛋白的双向相互作用可能调节CCM疾病的多种病理过程。具体而言,新出现的证据通过其在减弱过度血管生长中的显着作用,在激活CCM1蛋白中起不可或缺的功能以及在调节整联蛋白功能中的重要作用,支持了ICAP-1参与CCM发病机理。

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