N-terminal acetylation of annexin A2 is required for S100A10 binding

膜联蛋白A2 乙酰化 异四聚体 膜联蛋白 细胞生物学 化学 生物化学 细胞骨架 生物 细胞 蛋白质亚单位 基因
作者
Ali Reza Nazmi,Gabriel Ozorowski,Milena Pejic,Julian P. Whitelegge,Volker Gerke,Hartmut Luecke
出处
期刊:Biological Chemistry [De Gruyter]
卷期号:393 (10): 1141-1150 被引量:33
标识
DOI:10.1515/hsz-2012-0179
摘要

Abstract Annexin A2 (AnxA2), a Ca 2+ -regulated phospholipid binding protein involved in membrane-cytoskeleton contacts and membrane transport, exists in two physical states, as a monomer or in a heterotetrameric complex mediated by S100A10. Formation of the AnxA2-S100A10 complex is of crucial regulatory importance because only the complex is firmly anchored in the plasma membrane, where it functions in the plasma membrane targeting/recruitment of certain ion channels and receptors. The S100A10 binding motif is located in the first 12 residues of the AnxA2 N-terminal domain, but conflicting reports exist as to the importance of N-terminal AnxA2 acetylation with regard to S100A10 binding. We show here that AnxA2 is subject to N-terminal modification when expressed heterologously in Escherichia coli . Met1 is removed and Ser2 is acetylated, yielding the same modification as the authentic mammalian protein. Bacterially expressed and N-terminally acetylated AnxA2 binds S100A10 with an affinity comparable to AnxA2 from porcine tissue and is capable of forming the AnxA2-S100A10 heterotetramer. Complex formation is competitively inhibited by acetylated but not by non-acetylated peptides covering the N-terminal AnxA2 sequence. These results demonstrate that N-terminal acetylation of AnxA2 is required for S100A10 binding and that this common eukaryotic modification is also obtained upon expression in bacteria.
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