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将来自各种人类细胞类型的膜蛋白快速整合到磷脂双层纳米盘中。

Express incorporation of membrane proteins from various human cell types into phospholipid bilayer nanodiscs.

作者信息

Mak Stefanie, Sun Ruoyu, Schmalenberg Michael, Peters Carsten, Luppa Peter B

机构信息

Institut für Klinische Chemie und Pathobiochemie, Klinikum rechts der Isar, Technical University of Munich, Ismaninger Strasse 22, Munich 81675, Germany.

Department Chemistry, Centre for Integrated Protein Science Munich (CiPSM), Technical University of Munich, Lichtenbergstrasse 4, Munich 85748, Germany.

出版信息

Biochem J. 2017 Apr 4;474(8):1361-1371. doi: 10.1042/BCJ20161110.

Abstract

Analysis of membrane proteins is still inadequately represented in diagnostics despite their importance as drug targets and biomarkers. One main reason is the difficult handling caused by their insolubility in aqueous buffer solutions. The nanodisc technology was developed to circumvent this challenge and enables analysis of membrane proteins with standard research methods. However, existing nanodisc generation protocols rely on time-consuming membrane isolation and protein purification from overexpression systems. In the present study, we present a novel, simplified procedure for the rapid generation of nanodiscs directly from intact cells. Workflow and duration of the nanodisc preparation were shortened without reducing the reconstitution efficiency, and all the steps were modified for the use of only standard laboratory equipment. This protocol was successfully applied to various human cell types, such as cultivated human embryonic kidney 293 (HEK-293) cells, as well as freshly isolated human red blood cells and platelets. In addition, the reconstitution of membrane proteins from cell organelles was achieved. The use of endogenous lipids ensures a native-like environment, which promotes native protein (re)folding. Nanodisc generation was verified by size exclusion chromatography and EM, whereas incorporation of different membrane proteins was demonstrated by Western blot analysis. Our protocol enabled the rapid incorporation of endogenous membrane proteins from human cells into nanodiscs, which can be applied to analytical approaches.

摘要

尽管膜蛋白作为药物靶点和生物标志物非常重要,但在诊断中对其分析的体现仍不充分。一个主要原因是它们在水性缓冲溶液中不溶,导致处理困难。纳米盘技术的开发就是为了应对这一挑战,并能够使用标准研究方法分析膜蛋白。然而,现有的纳米盘生成方案依赖于从过表达系统中进行耗时的膜分离和蛋白质纯化。在本研究中,我们提出了一种新颖、简化的程序,可直接从完整细胞快速生成纳米盘。纳米盘制备的工作流程和持续时间得以缩短,同时不降低重构效率,并且所有步骤都进行了修改,以便仅使用标准实验室设备。该方案已成功应用于各种人类细胞类型,如培养的人胚肾293(HEK - 293)细胞,以及新鲜分离的人类红细胞和血小板。此外,还实现了从细胞器中重构膜蛋白。使用内源性脂质可确保类似天然的环境,从而促进天然蛋白的(再)折叠。通过尺寸排阻色谱和电子显微镜验证了纳米盘的生成,而通过蛋白质印迹分析证明了不同膜蛋白的掺入。我们的方案能够将人类细胞中的内源性膜蛋白快速掺入纳米盘中,可应用于分析方法。

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