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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Visualizing association of lipidated signaling proteins in heterogeneous membranes--partitioning into subdomains, lipid sorting, interfacial adsorption, and protein association.
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Visualizing association of lipidated signaling proteins in heterogeneous membranes--partitioning into subdomains, lipid sorting, interfacial adsorption, and protein association.

机译:可视化异质膜中脂化信号蛋白的缔合-分为亚结构域,脂质分选,界面吸附和蛋白质缔合。

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摘要

In a combined chemical biological and biophysical approach, we studied the partitioning of differently fluorescent-labeled palmitoyl and/or farnesyl lipidated peptides, which represent membrane recognition model systems, as well as the full lipidated N-Ras protein into various model membrane systems including canonical model raft mixtures. To this end, two-photon fluorescence microscopy on giant unilamellar vesicles, complemented by tapping-mode atomic force microscopy (AFM) measurements, was carried out. The measurements were performed over a wide temperature range, ranging from 30 to 80 degrees C to cover different lipid phase states (solid-ordered (gel), fluid/gel, liquid-ordered/liquid-disordered, all-fluid). The results provide direct evidence that partitioning of the lipidated peptides and N-Ras occurs preferentially into liquid-disordered lipid domains, which is also reflected in a faster kinetics of incorporation. The phase sequence of preferential binding of N-Ras to mixed-domain lipid vesicles is liquid-disordered>liquid-orderedsolid-ordered. Intriguingly, we detect - using the better spatial resolution of AFM - also a large proportion of the lipidated protein located at the liquid-disordered/liquid-ordered phase boundary, thus leading to a favorable decrease in line tension that is associated with the rim of neighboring domains. In an all-liquid-ordered, cholesterol-rich phase, phase separation can be induced by an effective lipid sorting mechanism owing to the high affinity of the lipidated peptides and proteins to a fluid-like lipid environment. At low temperatures, where the overall acyl chain order parameter of the lipid bilayer has markedly increased, such an efficient lipid sorting mechanism is energetically too costly and self-association of the peptide into small clusters takes place. These data reveal the interesting ability of the lipidated peptides and proteins to induce formation of fluid microdomains at physiologically relevant high cholesterol concentrations. Furthermore, our results reveal self-association of the N-Ras protein at the domain boundaries which may serve as an important vehicle for association processes and nanoclustering, which has also been observed in in vivo studies.
机译:在化学生物学和生物物理化学相结合的方法中,我们研究了代表膜识别模型系统的不同荧光标记的棕榈酰和/或法呢基脂化肽的划分,以及将完整脂化的N-Ras蛋白分为各种模型膜系统,包括经典的模型筏混合物。为此,在大单层囊泡上进行了双光子荧光显微镜,并采用了振实模式原子力显微镜(AFM)测量。在从30到80摄氏度的宽温度范围内进行测量,以涵盖不同的脂质相态(固体有序(凝胶),流体/凝胶,液体有序/液体无序,全流体)。结果提供了直接的证据,即脂化的肽和N-Ras的分配优先发生在液体无序的脂质结构域中,这也反映在更快的掺入动力学中。 N-Ras与混合结构域脂质囊泡优先结合的相序为液体无序>液体有序>固体有序。有趣的是,我们使用AFM更好的空间分辨率,还检测到位于液体无序/液体有序相边界处的大部分脂化蛋白,从而导致线张力的有利降低,而线张力与相邻域。在全液体有序的,富含胆固醇的相中,由于脂化肽和蛋白质对类脂质环境的高度亲和性,可以通过有效的脂质分选机制诱导相分离。在低温下,脂质双层的总体酰基链顺序参数已显着增加,这种有效的脂质分选机制在能量上过于昂贵,并且将肽自缔合成小簇。这些数据揭示了脂化的肽和蛋白质在生理上相关的高胆固醇浓度下诱导形成流体微区的有趣能力。此外,我们的结果揭示了N-Ras蛋白在域边界的自缔合,这可能是缔合过程和纳米簇的重要载体,这在体内研究中也已观察到。

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