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人工双铁蛋白:含两种不同类型螺旋间环的四螺旋束的溶液表征

Artificial di-iron proteins: solution characterization of four helix bundles containing two distinct types of inter-helical loops.

作者信息

Maglio Ornella, Nastri Flavia, Calhoun Jennifer R, Lahr Stephen, Wade Herschel, Pavone Vincenzo, DeGrado William F, Lombardi Angela

机构信息

Department of Chemistry, University of Naples Federico II, Via Cinthia, 80126 Naples, Italy.

出版信息

J Biol Inorg Chem. 2005 Aug;10(5):539-49. doi: 10.1007/s00775-005-0002-8. Epub 2005 Sep 23.

DOI:10.1007/s00775-005-0002-8
PMID:16091937
Abstract

Peptide-based models have an enormous impact for the development of metalloprotein models, as they seem appropriate candidates to mimic both the structural characteristics and reactivity of the natural systems. Through the de novo design of four-helix bundles, we developed the DF (Due Ferri) family of artificial proteins, as models of di-iron and di-manganese metalloproteins. The goal of our research is to elucidate how the electrostatic environment, polarity and solvent accessibility of the metal-binding site, influence the functional properties of di-iron proteins. The first two subsets of the DF protein family, DF1 and DF2, consist of two non-covalently associated helix-loop-helix motifs, which bind the di-metal cofactor near the center of the structure. The DF2 subset was designed to improve the properties of DF1: DF2 and DF2t have several changes in their sequences to improve solubility and metal ion access, as well as a change in the loop connecting the two helices. In order to evaluate how these changes affect the overall structure of the model proteins, we solved the NMR structures of the di-Zn(II) complexes of DF2 and DF2t, and compared these structures with those recently obtained from X-ray crystallography. Further, we examined the thermodynamic consequences associated with the mutations, by measuring the stability of DF2t in the presence of different metal ions, and comparing the results with the data already obtained for DF2. Taken together, analysis of all the data showed the importance of the turn conformation in the design and stability of four-helix bundle.

摘要

基于肽的模型对金属蛋白模型的发展具有巨大影响,因为它们似乎是模拟天然系统结构特征和反应性的合适候选者。通过从头设计四螺旋束,我们开发了DF(双铁)家族的人工蛋白,作为二铁和二锰金属蛋白的模型。我们研究的目标是阐明金属结合位点的静电环境、极性和溶剂可及性如何影响二铁蛋白的功能特性。DF蛋白家族的前两个子集DF1和DF2由两个非共价结合的螺旋-环-螺旋基序组成,它们在结构中心附近结合双金属辅因子。DF2子集旨在改善DF1的特性:DF2和DF2t在序列上有几处变化以提高溶解性和金属离子可及性,以及连接两个螺旋的环的变化。为了评估这些变化如何影响模型蛋白的整体结构,我们解析了DF2和DF2t的二锌(II)配合物的NMR结构,并将这些结构与最近通过X射线晶体学获得的结构进行比较。此外,我们通过测量DF2t在不同金属离子存在下的稳定性,并将结果与已获得的DF2数据进行比较,研究了与突变相关的热力学后果。综合来看,所有数据分析表明转角构象在四螺旋束的设计和稳定性中的重要性。

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