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Membrane binding of β2-glycoprotein I can be described by a two-state reaction model: an atomic force microscopy and surface plasmon resonance study

机译:β2-糖蛋白I的膜结合可以通过两种状态的反应模型来描述:原子力显微镜和表面等离子体共振研究

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摘要

Complexes formed between β2GPI (β2-glycoprotein I), a human plasma protein, and biological membranes are considered to be targets of macrophages and antiphospholipid autoantibodies involved in autoimmune diseases, such as antiphospholipid syndrome or systemic lupus erythematosus. The positively charged lysine-rich fifth domain of β2GPI facilitates its interaction with phospholipid membranes containing acidic phospholipids, which normally become exposed by apoptotic processes. In the present study, atomic force microscopy was applied to visualize the binding of β2GPI to a mixed phospholipid model membrane at physiological ionic strength. On supported lipid bilayers the formation of supramolecular assemblies of the protein with a height of approx. 3.3 nm was observed, suggesting a lateral agglomeration of β2GPI. Detailed analysis of kinetic constants using surface plasmon resonance revealed that the binding can be described by a two-state reaction model, i.e. a very fast interaction step, depending on the content of acidic phospholipids in the bilayer, and a second step with significantly lower kon and koff values. Taken together, our results suggest a biphasic interaction mechanism: a fast step of β2GPI binding to negatively charged lipids, mainly based on electrostatic interactions, and a slower phase of agglomeration of the protein on the bilayer surface accompanied by a protein-induced rigidification of the membrane, as revealed by electron paramagnetic resonance.
机译:β2GPI(β2-糖蛋白I),人血浆蛋白和生物膜之间形成的复合物被认为是巨噬细胞和参与自身免疫性疾病(例如抗磷脂综合征或系统性红斑狼疮)的抗磷脂自身抗体的靶标。 β2GPI的带正电荷的富含赖氨酸的第五结构域促进其与含有酸性磷脂的磷脂膜相互作用,所述酸性磷脂通常通过凋亡过程暴露出来。在本研究中,应用原子力显微镜以可视化的离子强度可视化β2GPI与混合磷脂模型膜的结合。在支持的脂质双分子层上,形成蛋白质的超分子组装体,其高度大约为1。观察到3.3 nm,表明β2GPI横向聚集。使用表面等离振子共振的动力学常数的详细分析表明,结合可以通过两种状态的反应模型来描述,即非常快速的相互作用步骤,具体取决于双层中酸性磷脂的含量,而第二步的反应速率明显较低和koff值。综上所述,我们的结果表明了一种双相相互作用的机制:β2GPI与带负电荷的脂质结合的快速步骤(主要基于静电相互作用),以及在双层表面上较慢的蛋白质团聚相伴随着蛋白质诱导的蛋白质的刚性化。电子顺磁共振所揭示的膜。

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