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15N和31P固态核磁共振研究甲型流感病毒M2蛋白跨膜结构域在限域于阳极氧化铝纳米孔的水合圆柱形脂质双分子层中的排列情况。

15N and 31P solid-state NMR study of transmembrane domain alignment of M2 protein of influenza A virus in hydrated cylindrical lipid bilayers confined to anodic aluminum oxide nanopores.

作者信息

Chekmenev Eduard Y, Hu Jun, Gor'kov Peter L, Brey William W, Cross Timothy A, Ruuge Andres, Smirnov Alex I

机构信息

The Center for Interdisciplinary Magnetic Resonance, National High Magnetic Field Laboratory (NHMFL), Tallahassee, FL 32310, USA.

出版信息

J Magn Reson. 2005 Apr;173(2):322-7. doi: 10.1016/j.jmr.2004.12.006.

Abstract

This communication reports the first example of a high resolution solid-state 15N 2D PISEMA NMR spectrum of a transmembrane peptide aligned using hydrated cylindrical lipid bilayers formed inside nanoporous anodic aluminum oxide (AAO) substrates. The transmembrane domain SSDPLVVA(A-15N)SIIGILHLILWILDRL of M2 protein from influenza A virus was reconstituted in hydrated 1,2-dimyristoyl-sn-glycero-3-phosphatidylcholine bilayers that were macroscopically aligned by a conventional micro slide glass support or by the AAO nanoporous substrate. 15N and 31P NMR spectra demonstrate that both the phospholipids and the protein transmembrane domain are uniformly aligned in the nanopores. Importantly, nanoporous AAO substrates may offer several advantages for membrane protein alignment in solid-state NMR studies compared to conventional methods. Specifically, higher thermal conductivity of aluminum oxide is expected to suppress thermal gradients associated with inhomogeneous radio frequency heating. Another important advantage of the nanoporous AAO substrate is its excellent accessibility to the bilayer surface for exposure to solute molecules. Such high accessibility achieved through the substrate nanochannel network could facilitate a wide range of structure-function studies of membrane proteins by solid-state NMR.

摘要

本通讯报道了首例使用在纳米多孔阳极氧化铝(AAO)基底内部形成的水合圆柱形脂质双层排列的跨膜肽的高分辨率固态15N二维PISEMA NMR谱。甲型流感病毒M2蛋白的跨膜结构域SSDPLVVA(A-15N)SIIGILHLILWILDRL在水合1,2-二肉豆蔻酰-sn-甘油-3-磷脂酰胆碱双层中重构,该双层通过传统的载玻片玻璃支撑或AAO纳米多孔基底进行宏观排列。15N和31P NMR谱表明磷脂和蛋白质跨膜结构域在纳米孔中均一排列。重要的是,与传统方法相比,纳米多孔AAO基底在固态NMR研究中对膜蛋白排列可能具有若干优势。具体而言,预计氧化铝的较高热导率可抑制与不均匀射频加热相关的热梯度。纳米多孔AAO基底的另一个重要优势是其对双层表面具有极好的可及性,便于溶质分子接触。通过基底纳米通道网络实现的这种高可及性可促进通过固态NMR对膜蛋白进行广泛的结构-功能研究。

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