首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Surface Tensiometry of Apolipoprotein B Domains at Lipid Interfaces Suggests a New Model for the Initial Steps in Triglyceride-rich Lipoprotein Assembly
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Surface Tensiometry of Apolipoprotein B Domains at Lipid Interfaces Suggests a New Model for the Initial Steps in Triglyceride-rich Lipoprotein Assembly

机译:脂质界面上载脂蛋白B结构域的表面张力测定表明富含甘油三酸酯的脂蛋白组装的初始步骤的新模型。

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摘要

Apolipoprotein B (apoB) is the principal protein component of triacylglyceride (TAG)-rich lipoproteins, including chylomicrons and very low density lipoprotein, which is the precursor to LDL (the “bad cholesterol”). TAG-rich lipoprotein assembly is initiated by the N-terminal βα1 superdomain of apoB, which co-translationally binds and remodels the luminal leaflet of the rough endoplasmic reticulum. The βα1 superdomain contains four domains and is predicted to interact directly with lipids. Using drop tensiometry, we examined the interfacial properties of the α-helical and C-sheet domains and several subdomains to establish a detailed structure-function relationship at the lipid/water interface. The adsorption, stress response, exchangeability, and pressure (Π)-area relationship were studied at both triolein/water and triolein/1-palmitoyl, 2-oleoylphosphatidylcholine/water interfaces that mimic physiological environments. The α-helical domain spontaneously adsorbed to a triolein/water interface and formed a viscoelastic surface. It was anchored to the surface by helix 6, and the other helices were ejected and/or remodeled on the surface as a function of surface pressure. The C-sheet instead formed an elastic film on a triolein/water interface and was irreversibly anchored to the lipid surface, which is consistent with the behavior of amphipathic β-strands. When both domains were adsorbed together on the surface, the C-sheet shielded a portion of the α-helical domain from the surface, which retained its globular structure. Overall, the unique secondary and tertiary structures of the N-terminal domains of apoB support the intrinsic capability of co-translational lipid recruitment. The evidence presented here allows the construction of a detailed model of the initiation of TAG-rich lipoprotein assembly.
机译:载脂蛋白B(apoB)是富含三酰甘油(TAG)的脂蛋白的主要蛋白成分,包括乳糜微粒和极低密度脂蛋白,它们是LDL(“坏胆固醇”)的前体。富含TAG的脂蛋白装配体由apoB的N端βα1超域启动,该域共翻译结合并重塑粗糙内质网的腔小叶。 βα1超结构域包含四个结构域,并被预测与脂质直接相互作用。使用液滴张力测定法,我们检查了α-螺旋和C-sheet结构域以及几个子结构域的界面特性,以建立脂质/水界面的详细结构-功能关系。在模拟生理环境的三油精/水和三油精/ 1-棕榈酰基,2-油酰基磷脂酰胆碱/水界面处,研究了吸附,应力响应,交换性和压力(Π)-面积关系。 α-螺旋结构域自发地吸附到三油酸/水界面并形成粘弹性表面。它通过螺旋线6固定在表面上,其他螺旋线则根据表面压力弹出和/或重塑在表面上。相反,C片在三油酸/水界面上形成了一个弹性膜,并且不可逆地锚定在脂质表面,这与两亲性β链的行为是一致的。当两个畴都一起吸附在表面上时,C片层将一部分α螺旋畴与表面屏蔽开,从而保留了其球形结构。总的来说,apoB N末端结构域的独特二级和三级结构支持共翻译脂质募集的内在能力。此处提供的证据允许构建富含TAG的脂蛋白组装起始的详细模型。

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