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通过联合 LILBID-质谱和 NMR 光谱技术深入了解共翻译膜蛋白插入。

Insights into Cotranslational Membrane Protein Insertion by Combined LILBID-Mass Spectrometry and NMR Spectroscopy.

机构信息

Institute of Physical and Theoretical Chemistry and ‡Institute of Biophysical Chemistry, Centre for Biomolecular Magnetic Resonance, J.W. Goethe-University , Frankfurt am Main 60438, Germany.

出版信息

Anal Chem. 2017 Nov 21;89(22):12314-12318. doi: 10.1021/acs.analchem.7b03309. Epub 2017 Oct 30.

Abstract

Cotranslational insertion of membrane proteins into defined nanoparticle membranes has been developed as an efficient process to produce highly soluble samples in native-like environments and to study lipid-dependent effects on protein structure and function. Numerous examples of the structural and functional characterization of transporters, ion channels, or G-protein-coupled receptors in cotranslationally formed nanodisc complexes demonstrate the versatility of this approach, although the basic underlying mechanisms of membrane insertion are mainly unknown. We have revealed the first aspects of the insertion of proteins into nanodiscs by combining cell-free expression, noncovalent mass spectrometry, and NMR spectroscopy. We provide evidence of cooperative insertion of homo-oligomeric complexes and demonstrate the possibility to modulate their stoichiometry by modifying reaction conditions. Additionally, we show that significant amounts of lipid are released from the nanodiscs upon insertion of larger protein complexes.

摘要

共翻译插入(cotranslational insertion)膜蛋白到特定的纳米颗粒膜中已被开发为一种有效方法,可在类似天然环境中生产高度可溶性的样品,并研究脂质对蛋白质结构和功能的依赖性影响。许多转运蛋白、离子通道或 G 蛋白偶联受体在共翻译形成的纳米盘复合物中的结构和功能特征的例子证明了这种方法的多功能性,尽管膜插入的基本潜在机制主要未知。我们通过结合无细胞表达、非共价质谱和 NMR 光谱学揭示了蛋白质插入纳米盘的第一个方面。我们提供了蛋白质共翻译插入同型寡聚复合物的证据,并证明通过改变反应条件可以调节其化学计量的可能性。此外,我们还表明,在较大的蛋白质复合物插入时,大量的脂质从纳米盘中释放出来。

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