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基于核磁共振取向限制同时确定膜蛋白的归属和结构

Simultaneous assignment and structure determination of a membrane protein from NMR orientational restraints.

作者信息

Marassi Francesca M, Opella Stanley J

机构信息

The Burnham Institute, La Jolla, California 92037, USA.

出版信息

Protein Sci. 2003 Mar;12(3):403-11. doi: 10.1110/ps.0211503.

Abstract

A solid-state NMR approach for simultaneous resonance assignment and three-dimensional structure determination of a membrane protein in lipid bilayers is described. The approach is based on the scattering, hence the descriptor "shotgun," of (15)N-labeled amino acids throughout the protein sequence (and the resulting NMR spectra). The samples are obtained by protein expression in bacteria grown on media in which one type of amino acid is labeled and the others are not. Shotgun NMR short-circuits the laborious and time-consuming process of obtaining complete sequential assignments prior to the calculation of a protein structure from the NMR data by taking advantage of the orientational information inherent to the spectra of aligned proteins. As a result, it is possible to simultaneously assign resonances and measure orientational restraints for structure determination. A total of five two-dimensional (1)H/(15)N PISEMA (polarization inversion spin exchange at the magic angle) spectra, from one uniformly and four selectively (15)N-labeled samples, were sufficient to determine the structure of the membrane-bound form of the 50-residue major pVIII coat protein of fd filamentous bacteriophage. Pisa (polarity index slat angle) wheels are an essential element in the process, which starts with the simultaneous assignment of resonances and the assembly of isolated polypeptide segments, and culminates in the complete three-dimensional structure of the protein with atomic resolution. The principles are also applicable to weakly aligned proteins studied by solution NMR spectroscopy. [The structure we determined for the membrane-bound form of the Fd bacteriophage pVIII coat protein has been deposited in the Protein Data Bank as PDB file 1MZT.]

摘要

本文描述了一种用于同时进行脂质双层中膜蛋白的共振归属和三维结构测定的固态核磁共振方法。该方法基于对整个蛋白质序列中(15)N标记氨基酸的散射,因此称为“鸟枪法”(以及由此产生的核磁共振谱)。样品通过在含有一种标记氨基酸而其他氨基酸未标记的培养基上生长的细菌中表达蛋白质来获得。鸟枪法核磁共振通过利用对齐蛋白质谱中固有的取向信息,绕过了在从核磁共振数据计算蛋白质结构之前获得完整序列归属这一费力且耗时的过程。结果,可以同时进行共振归属并测量用于结构测定的取向限制。来自一个均匀(15)N标记和四个选择性(15)N标记样品的总共五个二维(1)H/(15)N PISEMA(魔角极化反转自旋交换)谱足以确定fd丝状噬菌体50个残基的主要pVIII外壳蛋白的膜结合形式的结构。比萨(极性指数板角)轮是该过程中的一个关键要素,该过程始于共振的同时归属和分离多肽片段的组装,并最终得到具有原子分辨率的蛋白质完整三维结构。这些原理也适用于通过溶液核磁共振光谱研究的弱对齐蛋白质。[我们确定的fd噬菌体pVIII外壳蛋白膜结合形式的结构已作为PDB文件1MZT存入蛋白质数据库。]

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