首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Formation of irreversibly bound annexin A1 protein domains on POPC/POPS solid supported membranes.
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Formation of irreversibly bound annexin A1 protein domains on POPC/POPS solid supported membranes.

机译:在POPC / POPS固体支持膜上形成不可逆结合的膜联蛋白A1蛋白结构域。

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摘要

The specific interaction of annexin A1 with phospholipid bilayers is scrutinized by means of scanning force and fluorescence microscopy, quartz crystal microbalance, ellipsometry, and modeled by dynamic Monte Carlo simulations. It was found that POPC/POPS bilayers exhibit phase separation in POPC- and POPS-enriched domains as a function of Ca2+ concentration. Annexin A1 interacts with POPC/POPS bilayers by forming irreversibly bound protein domains with monolayer thickness on POPS-enriched nanodomains, while the attachment of proteins to the POPC-enriched regions is fully reversible. A thorough kinetic analysis of the process reveals that both, the binding constant of annexin A1 at the POPC-rich areas as well as the irreversible adsorption rate to the POPS-rich domains increases with calcium ion concentration. Based on the thermodynamic and kinetic data, a possible mechanism of the annexin A1 membrane interaction can be proposed.
机译:膜联蛋白A1与磷脂双层的特异性相互作用通过扫描力和荧光显微镜,石英晶体微量天平,椭圆光度法进行仔细研究,并通过动态蒙特卡洛模拟法进行建模。已发现,POPC / POPS双层在富含POPC和POPS的域中表现出相分离,这是Ca2 +浓度的函数。 Annexin A1通过在POPS富集的纳米域上形成单层厚度的不可逆结合的蛋白质域,与POPC / POPS双层相互作用,而蛋白质与POPC富集区域的附着是完全可逆的。对该过程进行彻底的动力学分析表明,膜联蛋白A1在富含POPC的区域的结合常数以及对富含POPS的域的不可逆吸附速率均随钙离子浓度的增加而增加。基于热力学和动力学数据,可以提出膜联蛋白A1膜相互作用的可能机制。

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