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糖脂转移蛋白对支撑脂质双层中糖脂含量的动态调节。

Dynamic modulation of the glycosphingolipid content in supported lipid bilayers by glycolipid transfer protein.

机构信息

Biosurfaces Unit, Cooperative Research Center in Biomaterials (CIC biomaGUNE), San Sebastian, Spain.

出版信息

Biophys J. 2010 Nov 3;99(9):2947-56. doi: 10.1016/j.bpj.2010.09.016.

Abstract

Supported lipid bilayers (SLBs) are popular models of cell membranes. Owing to the importance of glycosphingolipids (GSLs) in modulating structure and function of membranes and membrane proteins, methods to tune the GSL content in SLBs would be desirable. Glycolipid transfer protein (GLTP) can selectively transfer GSLs between membrane compartments. Using the ganglioside GM1 as a model GSL, and two mass-sensitive and label-free characterization techniques-quartz crystal microbalance with dissipation monitoring and ellipsometry-we demonstrate that GLTP is an efficient and robust biochemical tool to dynamically modulate the GSL content of SLBs up to 10 mol % GM1, and to quantitatively control the GSL content in the bulk-facing SLB leaflet. By exploiting what we believe to be a novel tool, we provide evidence that GM1 distributes highly asymmetrically in silica-supported lipid bilayers, with ∼85% of the ganglioside being present in the bulk-facing membrane leaflet. We report also that the pentameric B-subunit of cholera toxin binds with close-to-maximal stoichiometry to GM1 in SLBs over a large range of GM1 concentrations. Furthermore, we quantify the liganding affinity of GLTP for GM1 in an SLB context to be 1.5 μM.

摘要

支持的脂质双层 (SLB) 是细胞膜的流行模型。由于糖脂 (GSL) 在调节膜和膜蛋白的结构和功能方面的重要性,因此需要调整 SLB 中 GSL 含量的方法。糖脂转移蛋白 (GLTP) 可以在膜隔室之间选择性地转移 GSL。使用神经节苷脂 GM1 作为模型 GSL,以及两种质量敏感且无标记的表征技术——石英晶体微天平耗散监测和椭圆偏振法——我们证明 GLTP 是一种有效且强大的生化工具,可以动态调节 SLB 中 GSL 的含量高达 10 mol% GM1,并定量控制面向体相的 SLB 小叶中的 GSL 含量。通过利用我们认为是一种新颖的工具,我们提供了证据表明 GM1 在二氧化硅支持的脂质双层中高度不对称分布,约 85%的神经节苷脂存在于面向体相的膜小叶中。我们还报告说,霍乱毒素的五聚体 B 亚基在 GM1 浓度较大的范围内以接近最大的化学计量比结合到 SLB 中的 GM1。此外,我们在 SLB 环境中定量了 GLTP 与 GM1 的配体亲和力为 1.5 μM。

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