Yan Xiaolin, Kumar Kiran, Miclette Lamarche Renaud, Youssef Hala, Shaw Gary S, Marcotte Isabelle, DeWolf Christine E, Warschawski Dror E, Boisselier Elodie
Department of Ophthalmology, Faculty of Medicine, Université Laval, Quebec City, QC, G1S 4L8 Canada.
CUO-Recherche, Centre de Recherche du CHU de Québec, Hôpital du Saint-Sacrement, CHU de Québec, Quebec City, QC, G1S 4L8 Canada.
Langmuir. 2021 Aug 2. doi: 10.1021/acs.langmuir.1c00342.
Protein S100A10 participates in different cellular mechanisms and has different functions, especially at the membrane. Among those, it forms a ternary complex with annexin A2 and the C-terminal of AHNAK and then joins the dysferlin membrane repair complex. Together, they act as a platform enabling membrane repair. Both AHNAK and annexin A2 have been shown to have membrane binding properties. However, the membrane binding abilities of S100A10 are not clear. In this paper, we aimed to study the membrane binding of S100A10 in order to better understand its role in the cell membrane repair process. S100A10 was overexpressed by and purified by affinity chromatography. Using a Langmuir monolayer as a model membrane, the binding parameters and ellipsometric angles of the purified S100A10 were measured using surface tensiometry and ellipsometry, respectively. Phosphorus-31 solid-state nuclear magnetic resonance spectroscopy was also used to study the interaction of S100A10 with lipid bilayers. In the presence of a lipid monolayer, S100A10 preferentially interacts with unsaturated phospholipids. In addition, its behavior in the presence of a bilayer model suggests that S100A10 interacts more with the negatively charged polar head groups than the zwitterionic ones. This work offers new insights on the binding of S100A10 to different phospholipids and advances our understanding of the parameters influencing its membrane behavior.
蛋白质S100A10参与不同的细胞机制并具有不同的功能,尤其是在细胞膜上。其中,它与膜联蛋白A2和AHNAK的C末端形成三元复合物,然后加入dysferlin膜修复复合物。它们共同构成一个促进膜修复的平台。研究表明,AHNAK和膜联蛋白A2都具有膜结合特性。然而,S100A10的膜结合能力尚不清楚。在本文中,我们旨在研究S100A10的膜结合情况,以便更好地理解其在细胞膜修复过程中的作用。通过亲和层析法对过表达的S100A10进行纯化。以Langmuir单层膜作为模型膜,分别使用表面张力测定法和椭偏仪测量纯化后的S100A10的结合参数和椭偏角。还利用磷-31固态核磁共振光谱研究S100A10与脂质双层的相互作用。在脂质单层存在的情况下,S100A10优先与不饱和磷脂相互作用。此外,其在双层模型存在时的行为表明,S100A10与带负电荷的极性头部基团的相互作用比与两性离子头部基团的相互作用更强。这项工作为S100A10与不同磷脂的结合提供了新的见解,并加深了我们对影响其膜行为参数的理解。