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通过核磁共振光谱直接检测生物分子中的N-H[…]O=C氢键。

Direct detection of N-H[...]O=C hydrogen bonds in biomolecules by NMR spectroscopy.

作者信息

Cordier Florence, Nisius Lydia, Dingley Andrew J, Grzesiek Stephan

机构信息

Department of Structural Biology and Chemistry, Institut Pasteur, 28 Rue du Docteur Roux, 75015 Paris, France.

出版信息

Nat Protoc. 2008;3(2):235-41. doi: 10.1038/nprot.2007.498.

DOI:10.1038/nprot.2007.498
PMID:18274525
Abstract

A nuclear magnetic resonance (NMR) experiment is described for the direct detection of N-H[...]O=C hydrogen bonds (H-bonds) in 15N and 13C isotope-labeled biomolecules. This quantitative 'long-range' HNCO-COSY (correlation spectroscopy) experiment detects and quantifies electron-mediated scalar couplings across the H-bond (H-bond scalar couplings), which connect the magnetically active (15)N and (13)C nuclei on both sides of the H-bond. Detectable H-bonds comprise the canonical backbone H-bonds in proteins as well as other H-bonds in proteins and nucleic acids with N-H donors and O=C (carbonylic or carboxylic) acceptors. Unlike other NMR observables, which provide only indirect evidence of the presence of H-bonds, the H-bond scalar couplings identify all partners of the H-bond, the donor, the donor proton and the acceptor, in a single experiment. The size of the scalar couplings can be related to H-bond geometries. The time required to detect the N-H[...]O=C H-bonds in small proteins (< or = approximately 10 kDa) is typically on the order of 1 d at millimolar concentrations, whereas H-bond detection for larger proteins (< or = approximately 30 kDa) may be possible within several days depending on concentration, isotope composition, magnetic field strength and molecular weight. The proteins ubiquitin (8.6 kDa), dimeric RANTES (2 x 8.5 kDa) and MAP30 (30 kDa) are used as examples to illustrate this procedure.

摘要

本文描述了一种核磁共振(NMR)实验,用于直接检测15N和13C同位素标记生物分子中的N-H[…]O=C氢键(H键)。这种定量的“远程”HNCO-COSY(相关光谱)实验可检测并量化通过氢键的电子介导标量耦合(氢键标量耦合),该耦合连接了氢键两侧具有磁活性的(15)N和(13)C核。可检测的氢键包括蛋白质中的典型主链氢键以及蛋白质和核酸中其他具有N-H供体和O=C(羰基或羧基)受体的氢键。与其他仅提供氢键存在间接证据的NMR观测结果不同,氢键标量耦合在单个实验中即可识别氢键的所有参与方,即供体、供体质子和受体。标量耦合的大小与氢键几何结构相关。在毫摩尔浓度下,检测小蛋白质(≤约10 kDa)中的N-H[…]O=C氢键通常需要约1天时间,而对于较大蛋白质(≤约30 kDa),根据浓度、同位素组成、磁场强度和分子量的不同,可能在几天内完成氢键检测。以泛素(8.6 kDa)、二聚体RANTES(2×8.5 kDa)和MAP30(30 kDa)为例来说明该过程。

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