首页> 外文期刊>Biophysical Journal >Native ligands change integrin sequestering but not oligomerization in raft-mimicking lipid mixtures.
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Native ligands change integrin sequestering but not oligomerization in raft-mimicking lipid mixtures.

机译:天然配体可改变整联蛋白的螯合作用,但不会改变类似筏筏的脂质混合物中的寡聚。

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Distinct lipid environments, including lipid rafts, are increasingly recognized as a crucial factor affecting membrane protein function in plasma membranes. Unfortunately, an understanding of their role in membrane protein activation and oligomerization has remained elusive due to the challenge of characterizing these often small and transient plasma membrane heterogeneities in live cells. To address this difficulty, we present an experimental model membrane platform based on polymer-supported lipid bilayers containing stable raft-mimicking domains (type I) and homogeneous cholesterol-lipid mixtures (type II) into which transmembrane proteins are incorporated (alpha(v)beta(3) and alpha(5)beta(1) integrins). These flexible lipid platforms enable the use of confocal fluorescence spectroscopy, including the photon counting histogram method, in tandem with epifluorescence microscopy to quantitatively probe the effect of the binding of native ligands from the extracellular matrix ligands (vitronectin and fibronectin for alpha(v)beta(3) and alpha(5)beta(1), respectively) on domain-specific protein sequestration and on protein oligomerization state. We found that both alpha(v)beta(3) and alpha(5)beta(1) sequester preferentially to nonraft domains in the absence of extracellular matrix ligands, but upon ligand addition, alpha(v)beta(3) sequesters strongly into raft-like domains and alpha(5)beta(1) loses preference for either raft-like or nonraft-like domains. A corresponding photon counting histogram analysis showed that integrins exist predominantly in a monomeric state. No change was detected in oligomerization state upon ligand binding in either type I or type II bilayers, but a moderate increase in oligomerization state was observed for increasing concentrations of cholesterol. The combined findings suggest a mechanism in which changes in integrin sequestering are caused by ligand-induced changes in integrin conformation and/or dynamics that affect integrin-lipid interactions without altering the integrin oligomerization state.
机译:包括脂质筏在内的独特脂质环境越来越被认为是影响质膜中膜蛋白功能的关键因素。不幸的是,由于表征活细胞中这些通常很小且短暂的质膜异质性的挑战,对它们在膜蛋白活化和低聚中的作用的了解仍然难以捉摸。为了解决这个困难,我们提出了一个实验模型膜平台,该平台基于聚合物支撑的脂质双层,该双层包含稳定的筏模拟域(I型)和均质的胆固醇-脂质混合物(II型),跨膜蛋白被整合到其中(alpha(v) beta(3)和alpha(5)beta(1)整合素)。这些灵活的脂质平台使共聚焦荧光光谱法(包括光子计数直方图法)与落射荧光显微镜结合使用,可以定量探测细胞外基质配体(玻连蛋白和纤连蛋白对α(v)β)的天然配体结合的影响(3)和alpha(5)beta(1),分别)在域特定的蛋白质螯合和蛋白质低聚状态上。我们发现,在没有胞外基质配体的情况下,alpha(v)beta(3)和alpha(5)beta(1)优先螯合非漂域,但是在配体添加后,alpha(v)beta(3)强烈螯合到筏状域和alpha(5)beta(1)失去对筏状或非筏状域的偏好。相应的光子计数直方图分析表明,整联蛋白主要以单体状态存在。在I型或II型双层中,配体结合后均未检测到低聚状态的变化,但是对于胆固醇浓度的增加,观察到低聚状态的适度增加。结合的发现提出了一种机制,其中整合素螯合的改变是由配体诱导的整合素构象和/或动力学的改变所引起的,该改变影响了整合素-脂质相互作用而没有改变整合素的低聚状态。

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