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一种用于在非氘代去污剂中测定膜肽和蛋白质结构的高分辨率1H NMR方法:应用于溶解在正辛基葡萄糖苷中的马蜂毒素X。

A high-resolution 1H NMR approach for structure determination of membrane peptides and proteins in non-deuterated detergent: application to mastoparan X solubilized in n-octylglucoside.

作者信息

Seigneuret M, Lévy D

机构信息

Laboratoire de Biophysique Cellulaire, URA 526, Université Paris, France.

出版信息

J Biomol NMR. 1995 Jun;5(4):345-52. doi: 10.1007/BF00182276.

Abstract

Application of 1H 2D NMR methods to solubilized membrane proteins and peptides has up to now required the use of selectively deuterated detergents. The unavailability of any of the common biochemical detergents in deuterated form has therefore limited to some extent the scope of this approach. Here a 1H NMR method is described which allows structure determination of membrane peptides and small membrane proteins by 1H 2D NMR in any type of non-deuterated detergent. The approach is based on regioselective excitation of protein resonances with DANTE-Z or spin-pinging pulse trains. It is shown that regioselective excitation of the amide-aromatic region of solubilized membrane proteins and peptides leads to an almost complete suppression of the two orders of magnitude higher contribution of the protonated detergent to the 1H NMR spectrum. Consistently TOCSY, COSY and NOESY sequences incorporating such regioselective excitation in the F2 dimension yield protein 1H 2D NMR spectra of quality comparable to those obtained in deuterated detergents. Regioselective TOCSY and NOESY spectra display all through-bond and through-space correlations within amide-aromatic protons and between these protons and aliphatic and alpha-protons. Regioselective COSY spectra provide scalar coupling constants between amide and alpha-protons. Application of the method to the membrane-active peptide mastoparan X, solubilized in n-octylglucoside, yields complete sequence-specific assignments and extensive secondary structure-related spatial proximities and coupling constants.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

迄今为止,将1H二维核磁共振方法应用于溶解的膜蛋白和肽需要使用选择性氘代去污剂。由于任何常见生化去污剂都没有氘代形式,因此这种方法的范围在一定程度上受到了限制。本文描述了一种1H核磁共振方法,该方法可通过1H二维核磁共振在任何类型的非氘代去污剂中测定膜肽和小膜蛋白的结构。该方法基于用DANTE-Z或自旋ping脉冲序列对蛋白质共振进行区域选择性激发。结果表明,对溶解的膜蛋白和肽的酰胺-芳香区域进行区域选择性激发,几乎可以完全抑制质子化去污剂对1H核磁共振谱贡献高两个数量级的信号。一致地,在F2维度中包含这种区域选择性激发的TOCSY、COSY和NOESY序列产生的蛋白质1H二维核磁共振谱质量与在氘代去污剂中获得的谱相当。区域选择性TOCSY和NOESY谱显示了酰胺-芳香质子之间以及这些质子与脂肪族和α-质子之间的所有通过键和通过空间的相关性。区域选择性COSY谱提供了酰胺和α-质子之间的标量耦合常数。将该方法应用于溶解在正辛基葡糖苷中的膜活性肽mastoparan X,得到了完整的序列特异性归属以及与二级结构相关的广泛空间邻近性和耦合常数。(摘要截短于250字)

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