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利用双折射偏振干涉法研究氧化固醇结合蛋白及其磷酸模拟突变体对脂质和膜的识别。

Lipid and membrane recognition by the oxysterol binding protein and its phosphomimetic mutant using dual polarization interferometry.

机构信息

Department of Chemistry and Centre for Biotechnology, Brock University, St. Catharines, Ontario L2A 3S1, Canada.

Department of Pediatrics and Biochemistry and Molecular Biology, Dalhousie University, Halifax, Nova Scotia B3H 4R2, Canada.

出版信息

Biochim Biophys Acta Biomembr. 2018 Nov;1860(11):2356-2365. doi: 10.1016/j.bbamem.2018.05.022. Epub 2018 Jun 4.

Abstract

OSBP binds, extracts and transfers sterols and phosphatidylinositol-4-phosphate (PI(4)P between liposomes, but the sequence of steps at the membrane surface leading to ligand removal is poorly characterized. In this study, we used dual polarization interferometry (DPI), a label-free surface analytical technique, to characterize the interaction of recombinant, purified OSBP as it flows over immobilized dioleoyl-phosphatidylcholine (DOPC) bilayers containing PI(4)P, cholesterol or 25-hydroxycholesterol. Kinetics of membrane interaction were analyzed for PI(4)P-binding and phosphorylation mutants of OSBP. Wild-type OSBP demonstrated a distinctive association with immobilized DOPC bilayers containing 1-8 mol% PI(4)P that was characterized by initial saturable binding followed by desorption, indicative of PI(4)P extraction. In support of this conclusion, an OSBP mutant with impaired binding and extraction of PI(4)P was stably absorbed to PI(4)P-containing membranes, while a pleckstrin homology domain mutant did not associate with PI(4)P-containing membranes. The inclusion of >2 mol% cholesterol, but not 25-hydroxycholesterol, in membranes, enhanced the absorption of the wild-type OSBP. A phosphomimetic of OSBP with enhanced in vitro sterol binding activity displayed membrane interaction properties similar to wild-type. These real-time flow studies allow us to dissect the association of OSBP with PI(4)P into discrete components; initial recruitment to PI(4)P membranes by the PH domain, detection and extraction of PI(4)P, and desorption due to ligand depletion.

摘要

OSBP 结合、提取并在脂质体之间转运甾醇和磷脂酰肌醇-4-磷酸 (PI(4)P),但介导配体移除的膜表面步骤顺序还知之甚少。在这项研究中,我们使用无标记表面分析技术——双偏振干涉测量(DPI),来表征重组、纯化 OSBP 与含有 PI(4)P、胆固醇或 25-羟基胆固醇的固定二油酰基磷脂酰胆碱(DOPC)双层膜相互作用的过程。我们分析了 OSBP 的 PI(4)P 结合和磷酸化突变体的膜相互作用动力学。野生型 OSBP 与含有 1-8 mol% PI(4)P 的固定 DOPC 双层膜表现出独特的结合,其特征是初始饱和结合,随后解吸,表明 PI(4)P 被提取。为了支持这一结论,一种结合和提取 PI(4)P 能力受损的 OSBP 突变体稳定地被吸附在含有 PI(4)P 的膜上,而一个 Pleckstrin 同源结构域突变体则不与含有 PI(4)P 的膜结合。在膜中包含超过 2 mol% 的胆固醇,而不是 25-羟基胆固醇,增强了野生型 OSBP 的吸收。一种具有增强的体外甾醇结合活性的 OSBP 磷酸模拟物显示出与野生型相似的膜相互作用特性。这些实时流动研究使我们能够将 OSBP 与 PI(4)P 的结合分离成离散的成分;PH 结构域最初与 PI(4)P 膜的募集、PI(4)P 的检测和提取,以及由于配体耗尽而导致的解吸。

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