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致心律失常性右室心肌病相关 DSG2 突变影响桥粒钙黏蛋白结合动力学。

Arrhythmogenic cardiomyopathy related DSG2 mutations affect desmosomal cadherin binding kinetics.

机构信息

Experimental Biophysics and Applied Nanoscience, University of Bielefeld, Bielefeld, Germany.

Erich & Hanna Klessmann Institute for Cardiovascular Research and Development, Heart and Diabetes Center NRW, University Hospital of the Ruhr-University Bochum, Bad Oeynhausen, Germany.

出版信息

Sci Rep. 2017 Oct 23;7(1):13791. doi: 10.1038/s41598-017-13737-x.

Abstract

Cadherins are calcium dependent adhesion proteins that establish the intercellular mechanical contact by bridging the gap to adjacent cells. Desmoglein-2 (Dsg2) is a specific cadherin of the cell-cell contact in cardiac desmosomes. Mutations in the DSG2-gene are regarded to cause arrhythmogenic (right ventricular) cardiomyopathy (ARVC) which is a rare but severe heart muscle disease. The molecular pathomechanisms of the vast majority of DSG2 mutations, however, are unknown. Here, we investigated the homophilic binding of wildtype Dsg2 and two mutations which are associated with ARVC. Using single molecule force spectroscopy and applying Jarzynski's equality we determined the kinetics and thermodynamics of Dsg2 homophilic binding. Notably, the free energy landscape of Dsg2 dimerization exposes a high activation barrier which is in line with the proposed strand-swapping binding motif. Although the binding motif is not directly affected by the mutations the binding kinetics differ significantly from the wildtype. Furthermore, we applied a dispase based cell dissociation assay using HT1080 cell lines over expressing Dsg2 wildtype and mutants, respectively. Our molecular and cellular results consistently demonstrate that Dsg2 mutations can heavily affect homophilic Dsg2 interactions. Furthermore, the full thermodynamic and kinetic description of Dsg2 dimerization provides a consistent model of the so far discussed homophilic cadherin binding.

摘要

钙黏蛋白是一种依赖钙离子的细胞黏附蛋白,通过桥接相邻细胞之间的间隙来建立细胞间的机械接触。桥粒芯糖蛋白 2(Dsg2)是心脏桥粒细胞间连接的特异性钙黏蛋白。DSG2 基因突变被认为会导致致心律失常性右心室心肌病(ARVC),这是一种罕见但严重的心肌疾病。然而,绝大多数 DSG2 基因突变的分子发病机制尚不清楚。在这里,我们研究了与 ARVC 相关的野生型 Dsg2 和两种突变体的同源结合。使用单分子力谱学并应用 Jarzynski 等式,我们确定了 Dsg2 同源结合的动力学和热力学。值得注意的是,Dsg2 二聚化的自由能景观暴露了一个很高的激活能垒,这与提出的链交换结合基序一致。尽管结合基序不受突变的直接影响,但结合动力学与野生型有显著差异。此外,我们应用了基于Dispase 的细胞解离测定,使用分别过表达 Dsg2 野生型和突变体的 HT1080 细胞系。我们的分子和细胞结果一致表明,Dsg2 突变可以严重影响同源 Dsg2 相互作用。此外,Dsg2 二聚化的全热力学和动力学描述提供了迄今为止讨论的同源钙黏蛋白结合的一致模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8671/5653825/e9c3f09b5104/41598_2017_13737_Fig1_HTML.jpg

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