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首页> 外文期刊>The FASEB Journal >Correlative SICM-FCM reveals changes in morphology and kinetics of endocytic pits induced by disease-associated mutations in dynamin
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Correlative SICM-FCM reveals changes in morphology and kinetics of endocytic pits induced by disease-associated mutations in dynamin

机译:相关的SICM-FCM揭示了由dynamin的疾病相关突变诱导的内吞坑形态和动力学变化

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Dynamin 2 (DNM2) is a GTP-binding protein that controls endocytic vesicle scission and defines a whole class of dynamin-dependent endocytosis, including clathrin-mediated endocytosis by caveoli. It has been suggested that mutations in the DNM2 gene, associated with 3 inherited diseases, disrupt endocytosis. However, how exactly mutations affect the nanoscale morphology of endocytic machinery has never been studied. In this paper, we used live correlative scanning ion conductance microscopy (SICM) and fluorescence confocal microscopy (FCM) to study how disease-associated mutations affect the morphology and kinetics of clathrin-coated pits (CCPs) by directly following their dynamics of formation, maturation, and internalization in skin fibroblasts from patients with centronuclear myopathy (CNM) and in Cos-7 cells expressing corresponding dynamin mutants. Using SICM-FCM, which we have developed, we show how p.R465W mutation disrupts pit structure, preventing its maturation and internalization, and significantly increases the lifetime of CCPs. Differently, p.R522H slows down the formation of CCPs without affecting their internalization. We also found that CNM mutations in DNM2 affect the distribution of caveoli and reduce dorsal ruffling in human skin fibroblasts. Collectively, our SICM-FCM findings at single CCP level, backed up by electron microscopy data, argue for the impairment of several forms of endocytosis in DNM2 -linked CNM.—Ali, T., Bednarska, J., Vassilopoulos, S., Tran, M., Diakonov, I. A., Ziyadeh-Isleem, A., Guicheney, P., Gorelik, J., Korchev, Y. E., Reilly, M. M., Bitoun, M., Shevchuk, A. Correlative SICM-FCM reveals changes in morphology and kinetics of endocytic pits induced by disease-associated mutations in dynamin.
机译:动力蛋白2(DNM2)是一种GTP结合蛋白,可控制内吞小泡的分裂,并定义了一类完整的动力蛋白依赖性内吞作用,包括小窝蛋白介导的网格蛋白内吞作用。已经提出,与3种遗传疾病有关的DNM2基因突变破坏了内吞作用。然而,从未研究过确切的突变如何影响内吞机器的纳米级形态。在本文中,我们使用实时相关扫描离子电导显微镜(SICM)和荧光共聚焦显微镜(FCM)研究了与疾病相关的突变如何直接跟随网格蛋白包埋的坑(CCP)的形成动力学来影响其形态和动力学,中心核肌病(CNM)患者的皮肤成纤维细胞中的成熟和内在化,以及表达相应动力蛋白突变体的Cos-7细胞中的成熟和内在化。使用我们已经开发的SICM-FCM,我们展示p.R465W突变如何破坏基坑结构,防止其成熟和内在化,并显着延长CCP的寿命。不同的是,p.R522H减缓了CCP的形成而不会影响其内在化。我们还发现DNM2中的CNM突变会影响小窝的分布,并减少人皮肤成纤维细胞的背侧波纹。总的来说,我们在单个CCP水平上的SICM-FCM研究结果得到了电子显微镜数据的支持,证明了DNM2连接的CNM中几种形式的内吞作用的损害。-Ali,T.,Bednarska,J.,Vassilopoulos,S., Tran,M.,Diakonov,IA,Ziyadeh-Isleem,A.,Guicheney,P.,Gorelik,J.,Korchev,YE,Reilly,MM,Bitoun,M.,Shevchuk,A.相关的SICM-FCM揭示了变化动力相关疾病相关突变诱导的内吞坑的形态和动力学。

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