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细胞间界面中有序蛋白质组装的形成。

On the formation of ordered protein assemblies in cell-cell interfaces.

机构信息

School of Neurobiology, Biochemistry and Biophysics, Tel Aviv University, Tel Aviv-Yafo, Israel.

Zuckerman Mind, Brain and Behavior Institute, Columbia University, New York, NY 10027.

出版信息

Proc Natl Acad Sci U S A. 2022 Aug 23;119(34):e2206175119. doi: 10.1073/pnas.2206175119. Epub 2022 Aug 15.

Abstract

Crystal structures of many cell-cell adhesion receptors reveal the formation of linear "molecular zippers" comprising an ordered one-dimensional array of proteins that form both intercellular () and intracellular () interactions. The clustered protocadherins (cPcdhs) provide an exemplar of this phenomenon and use it as a basis of barcoding of vertebrate neurons. Here, we report both Metropolis and kinetic Monte Carlo simulations of cPcdh zipper formation using simplified models of cPcdhs that nevertheless capture essential features of their three-dimensional structure. The simulations reveal that the formation of long zippers is an implicit feature of cPcdh structure and is driven by their and interactions that have been quantitatively characterized in previous work. Moreover, in agreement with cryo-electron tomography studies, the zippers are found to organize into two-dimensional arrays even in the absence of attractive interactions between individual zippers. Our results suggest that the formation of ordered two-dimensional arrays of linear zippers of adhesion proteins is a common feature of cell-cell interfaces. From the perspective of simulations, they demonstrate the importance of a realistic depiction of adhesion protein structure and interactions if important biological phenomena are to be properly captured.

摘要

许多细胞-细胞粘附受体的晶体结构揭示了线性“分子拉链”的形成,这些拉链由蛋白质的有序一维排列组成,形成细胞间()和细胞内()相互作用。聚类原钙粘蛋白(cPcdhs)提供了这种现象的范例,并将其用作脊椎动物神经元条码的基础。在这里,我们使用简化的 cPcdh 模型报告了 cPcdh 拉链形成的 metropolis 和动力学蒙特卡罗模拟,尽管这些模型捕捉了它们三维结构的基本特征。模拟结果表明,长拉链的形成是 cPcdh 结构的隐含特征,由它们的 和 相互作用驱动,这些相互作用在以前的工作中已经得到了定量描述。此外,与冷冻电子断层扫描研究一致,即使在单个拉链之间没有吸引力相互作用的情况下,也发现拉链组织成二维阵列。我们的结果表明,线性粘附蛋白拉链的有序二维阵列的形成是细胞-细胞界面的共同特征。从模拟的角度来看,如果要正确捕获重要的生物学现象,则必须真实地描述粘附蛋白的结构和相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49b2/9407605/92d5d89c2450/pnas.2206175119fig01.jpg

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