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利用固态 NMR 技术进行人源α-防御素 HNP-1 的共振峰分配和三维结构测定。

Resonance assignment and three-dimensional structure determination of a human alpha-defensin, HNP-1, by solid-state NMR.

机构信息

Department of Chemistry, Iowa State University, Ames, IA 50011, USA.

出版信息

J Mol Biol. 2010 Mar 26;397(2):408-22. doi: 10.1016/j.jmb.2010.01.030. Epub 2010 Jan 22.

DOI:10.1016/j.jmb.2010.01.030
PMID:20097206
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2873975/
Abstract

Human alpha-defensins [human neutrophil peptides (HNPs)] are immune defense mini-proteins that act by disrupting microbial cell membranes. Elucidating the three-dimensional (3D) structures of HNPs in lipid membranes is important for understanding their mechanisms of action. Using solid-state NMR (SSNMR), we have determined the 3D structure of HNP-1 in a microcrystalline state outside the lipid membrane, which provides benchmarks for structure determination and comparison with the membrane-bound state. From a suite of two-dimensional and 3D magic-angle spinning experiments, (13)C and (15)N chemical shifts that yielded torsion angle constraints were obtained, while inter-residue distances were obtained to restrain the 3D fold. Together, these constraints led to the first high-resolution SSNMR structure of a human defensin. The SSNMR structure has close similarity to the crystal structures of the HNP family, with the exception of the loop region between the first and second beta-strands. The difference, which is partially validated by direct torsion angle measurements of selected loop residues, suggests possible conformational variation and flexibility of this segment of the protein, which may regulate HNP interaction with the phospholipid membrane of microbial cells.

摘要

人α-防御素[人中性粒细胞肽(HNPs)]是免疫防御的小蛋白,通过破坏微生物细胞膜发挥作用。阐明 HNPs 在脂质膜中的三维(3D)结构对于了解其作用机制很重要。我们使用固态 NMR(SSNMR),在脂质膜外的微晶状态下确定了 HNP-1 的 3D 结构,为结构确定提供了基准,并与膜结合状态进行了比较。通过一系列二维和 3D 魔角旋转实验,获得了产生扭转角约束的(13)C 和(15)N 化学位移,同时获得了限制 3D 折叠的残基间距离。这些约束共同导致了第一个高分辨率的人防御素的 SSNMR 结构。SSNMR 结构与人防御素家族的晶体结构非常相似,除了第一和第二β-链之间的环区。这种差异部分通过对选定环残基的直接扭转角测量得到验证,表明该蛋白片段可能存在构象变化和灵活性,这可能调节 HNP 与微生物细胞的磷脂膜的相互作用。

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