Montenegro Felipe A, Cantero Jorge R, Barrera Nelson P
Laboratory of Nanophysiology and Structural Biology, Department of Physiology, Faculty of Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile.
Front Physiol. 2017 Nov 9;8:892. doi: 10.3389/fphys.2017.00892. eCollection 2017.
Membrane proteins represent a challenging family of macromolecules, particularly related to the methodology aimed at characterizing their three-dimensional structure. This is mostly due to their amphipathic nature as well as requirements of ligand bindings to stabilize or control their function. Recently, Mass Spectrometry (MS) has become an important tool to identify the overall stoichiometry of native-like membrane proteins complexed to ligand bindings as well as to provide insights into the transport mechanism across the membrane, with complementary information coming from X-ray crystallography. This perspective article emphasizes MS findings coupled with X-ray crystallography in several membrane protein lipid complexes, in particular transporters, ion channels and molecular machines, with an overview of techniques that allows a more thorough structural interpretation of the results, which can help us to unravel hidden mysteries on the membrane protein function.
膜蛋白是一类具有挑战性的大分子,特别是在表征其三维结构的方法方面。这主要是由于它们的两亲性以及配体结合以稳定或控制其功能的要求。最近,质谱(MS)已成为一种重要工具,可用于识别与配体结合的天然样膜蛋白的整体化学计量,并深入了解跨膜转运机制,同时X射线晶体学可提供补充信息。这篇观点文章强调了在几种膜蛋白脂质复合物中,特别是转运蛋白、离子通道和分子机器中,质谱结果与X射线晶体学的结合,并概述了一些技术,这些技术能够对结果进行更全面的结构解释,有助于我们揭开膜蛋白功能的隐藏奥秘。