首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Palmitoylation of Claudin-5 Proteins Influences Their Lipid Domain Affinity and Tight Junction Assembly at the Blood-Brain Barrier Interface
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Palmitoylation of Claudin-5 Proteins Influences Their Lipid Domain Affinity and Tight Junction Assembly at the Blood-Brain Barrier Interface

机译:Claudin-5蛋白的棕榈酰基在血脑屏障界面处影响它们的脂质结构域亲和力和紧密结合物

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Post-translational lipid modification of integral membrane proteins is recognized as a key mechanism to modulate protein-protein and membrane-protein associations. Despite numerous reports of lipid-modified proteins, molecular-level understanding of the influence of lipid-modification of key membrane proteins remains elusive. This study focuses on the lipid modification of one such protein-claudin-5, a critical component of the blood-brain barrier tight junctions. Claudin-5 proteins are responsible for regulating the size and charge-selective permeability at the blood-brain interface. Palmitoylation of the claudin family of proteins is implicated in influencing the tight junction permeability in prior experimental studies. Here, we investigate the impact of palmitoylation on claudin-5 self-assembly using multiscale molecular simulations. To elucidate protein-membrane interactions, we used three model membrane compositions (endoplasmic reticulum, cholesterol-enriched endoplasmic reticulum, and plasma membrane) that mimic the complexity of cell organelles encountered by a typical membrane protein in its secretion pathway. The results show that palmitoylation enhances protein's affinity for cholesterol-rich domains in a membrane, and it can elicit a site-specific response based on the location of the palmitoyl chain on the protein. Also, in claudin-S self-assembly, palmitoylation restricts specific protein-protein conformations. Overall, this study demonstrates the significance of post-translational lipid modification of proteins in cellular and subcellular membranes, and the impact palmitoylation can have on critical cellular functions of the protein.
机译:可整体膜蛋白的翻译后脂质改性被认为是调节蛋白质 - 蛋白和膜 - 蛋白质关联的关键机制。尽管有许多脂质改性蛋白的报道,但对关键膜蛋白的脂质改性的影响的分子水平仍然是难以捉摸的。本研究重点介绍了一种这样的蛋白质-Claudin-5的脂质修饰,血脑屏障紧密交叉点的关键组分。 Claudin-5蛋白负责调节血脑界面处的尺寸和电荷选择性渗透性。 Claudin蛋白质的棕榈酰基族致力于在现有实验研究中影响紧密结渗透性。在这里,我们研究了使用多尺度分子模拟的棕榈酰基对汉语-5自组装的影响。为了阐明蛋白质 - 膜相互作用,我们使用了三种模型膜组合物(内质网,富含胆固醇的内质网和血浆膜),其模仿典型的膜蛋白在其分泌途径中遇到的细胞细胞器的复杂性。结果表明,棕榈酰化增强了蛋白质对膜中富含胆固醇的域的亲和力,并且可以基于棕榈酰基链对蛋白质的位置引起特异性响应。此外,在克劳德蛋白-S自组装中,棕榈酰化限制了特定的蛋白质蛋白质符合。总体而言,该研究表明了蛋白质在细胞和亚细胞膜中的翻译后脂质改性的重要性,并且冲击棕榈酰基可能对蛋白质的临界细胞功能具有。

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