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钙黏蛋白的顺式和反式相互作用是相互协作的。

Cadherin cis and trans interactions are mutually cooperative.

机构信息

Department of Chemical and Biological Engineering, University of Colorado, Boulder, CO 80309.

Department of Biochemistry, University of Illinois Urbana-Champaign, Urbana, IL 61801.

出版信息

Proc Natl Acad Sci U S A. 2021 Mar 9;118(10). doi: 10.1073/pnas.2019845118.

Abstract

Cadherin transmembrane proteins are responsible for intercellular adhesion in all biological tissues and modulate tissue morphogenesis, cell motility, force transduction, and macromolecular transport. The protein-mediated adhesions consist of adhesive trans interactions and lateral cis interactions. Although theory suggests cooperativity between cis and trans bonds, direct experimental evidence of such cooperativity has not been demonstrated. Here, the use of superresolution microscopy, in conjunction with intermolecular single-molecule Förster resonance energy transfer, demonstrated the mutual cooperativity of cis and trans interactions. Results further demonstrate the consequent assembly of large intermembrane junctions, using a biomimetic lipid bilayer cell adhesion model. Notably, the presence of cis interactions resulted in a nearly 30-fold increase in trans-binding lifetimes between epithelial-cadherin extracellular domains. In turn, the presence of trans interactions increased the lifetime of cis bonds. Importantly, comparison of trans-binding lifetimes of small and large cadherin clusters suggests that this cooperativity is primarily due to allostery. The direct quantitative demonstration of strong mutual cooperativity between cis and trans interactions at intermembrane adhesions provides insights into the long-standing controversy of how weak cis and trans interactions act in concert to create strong macroscopic cell adhesions.

摘要

钙黏蛋白跨膜蛋白负责所有生物组织中的细胞间黏附,并调节组织形态发生、细胞迁移、力转导和大分子运输。蛋白介导的黏附由黏附的跨相互作用和横向顺式相互作用组成。尽管理论上表明顺式和反式键之间存在协同作用,但尚未证明这种协同作用的直接实验证据。在这里,使用超分辨率显微镜结合分子间单分子Förster 共振能量转移,证明了顺式和反式相互作用的相互协同作用。结果进一步证明了使用仿生脂质双层细胞黏附模型构建大型的膜间连接。值得注意的是,顺式相互作用的存在导致上皮钙黏蛋白细胞外结构域之间的反式结合寿命增加了近 30 倍。反过来,反式相互作用的存在增加了顺式键的寿命。重要的是,对小和大钙黏蛋白簇的反式结合寿命的比较表明,这种协同作用主要是由于变构作用。在膜间黏附中,顺式和反式相互作用之间的强相互协同作用的直接定量证明,为如何解释弱顺式和反式相互作用协同作用以产生强大的宏观细胞黏附这一长期存在的争议提供了新的认识。

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