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一种选择性结合非生物辅因子的四螺旋束蛋白的计算从头设计与表征

Computational de novo design and characterization of a four-helix bundle protein that selectively binds a nonbiological cofactor.

作者信息

Cochran Frank V, Wu Sophia P, Wang Wei, Nanda Vikas, Saven Jeffery G, Therien Michael J, DeGrado William F

机构信息

Department of Biochemistry and Molecular Biophysics, Johnson Foundation, School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

J Am Chem Soc. 2005 Feb 9;127(5):1346-7. doi: 10.1021/ja044129a.

Abstract

We report the complete de novo design of a four-helix bundle protein that selectively binds the nonbiological DPP-Fe(III) metalloporphyrin cofactor (DPP-Fe(III) = 5, 15-Di[(4-carboxymethyleneoxy)phenyl]porphinato iron(III)). A tetrameric, D2-symmetric backbone scaffold was constructed to encapsulate two DPP-Fe(III) units through bis(His) coordination. The complete sequence was determined with the aid of the statistical computational design algorithm SCADS. The 34-residue peptide was chemically synthesized. UV-vis and CD spectroscopy, size-exclusion chromatography, and analytical ultracentrifugation indicated the peptide undergoes a transition from a predominantly random coil monomer to an alpha-helical tetramer upon binding DPP-Fe(III). EPR spectroscopy studies indicated the axial imidazole ligands were oriented in a perpendicular fashion, as defined by second-shell interactions that were included in the design. The 1-D 1H NMR spectrum of the assembled protein displayed features of a well-packed interior. The assembled protein possessed functional redox properties different from those of structurally similar systems containing the heme cofactor. The designed peptide demonstrated remarkable cofactor selectivity with a significantly weaker binding affinity for the natural heme cofactor. These findings open a path for the selective incorporation of more elaborate cofactors into designed scaffolds for constructing molecularly well-defined nanoscale materials.

摘要

我们报告了一种四螺旋束蛋白的全新设计,该蛋白可选择性结合非生物的DPP-Fe(III)金属卟啉辅因子(DPP-Fe(III)=5,15-二[(4-羧基亚甲基氧基)苯基]卟啉铁(III))。构建了一个具有D2对称性的四聚体主链支架,通过双(组氨酸)配位来包裹两个DPP-Fe(III)单元。借助统计计算设计算法SCADS确定了完整序列。化学合成了这条34个残基的肽。紫外可见光谱、圆二色光谱、尺寸排阻色谱和分析超速离心表明,该肽在结合DPP-Fe(III)后从主要为无规卷曲的单体转变为α-螺旋四聚体。电子顺磁共振光谱研究表明,轴向咪唑配体呈垂直取向,这与设计中包含的二级相互作用所定义的一致。组装好的蛋白质的一维氢核磁共振谱显示出内部紧密堆积的特征。组装好的蛋白质具有与含有血红素辅因子的结构相似系统不同的功能氧化还原特性。设计的肽表现出显著的辅因子选择性,对天然血红素辅因子的结合亲和力明显较弱。这些发现为将更精细的辅因子选择性地纳入设计支架以构建分子定义明确的纳米级材料开辟了一条道路。

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