| Literature DB >> 34916620 |
Jinghua Ge1, Xin Bian1,2,3,4,5, Lu Ma1,6,7,8, Yiying Cai1,2,3,4, Yanghui Li1,9, Jie Yang1, Erdem Karatekin6,7,10,11, Pietro De Camilli1,2,3,4,12, Yongli Zhang13,14.
Abstract
Extended synaptotagmins (E-Syts) mediate lipid exchange between the endoplasmic reticulum (ER) and the plasma membrane (PM). Anchored on the ER, E-Syts bind the PM via an array of C2 domains in a Ca2+- and lipid-dependent manner, drawing the two membranes close to facilitate lipid exchange. How these C2 domains bind the PM and regulate the ER-PM distance is not well understood. Here, we applied optical tweezers to dissect PM binding by E-Syt1 and E-Syt2. We detected Ca2+- and lipid-dependent membrane-binding kinetics of both E-Syts and determined the binding energies and rates of individual C2 domains or pairs. We incorporated these parameters in a theoretical model to recapitulate salient features of E-Syt-mediated membrane contacts observed in vivo, including their equilibrium distances and probabilities. Our methods can be applied to study other proteins containing multiple membrane-binding domains linked by disordered polypeptides.Entities:
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Year: 2021 PMID: 34916620 PMCID: PMC8891060 DOI: 10.1038/s41589-021-00914-3
Source DB: PubMed Journal: Nat Chem Biol ISSN: 1552-4450 Impact factor: 16.174