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铜绿假单胞菌Re(I)(CO)3(α-二亚胺)(HisX)+(X = 83、107、109、124、126)铜蓝蛋白的弛豫动力学

Relaxation dynamics of Pseudomonas aeruginosa Re(I)(CO)3(alpha-diimine)(HisX)+ (X = 83, 107, 109, 124, 126)Cu(II) azurins.

作者信息

Blanco-Rodríguez Ana María, Busby Michael, Ronayne Kate, Towrie Michael, Grădinaru Cristian, Sudhamsu Jawahar, Sýkora Jan, Hof Martin, Zális Stanislav, Di Bilio Angel J, Crane Brian R, Gray Harry B, Vlcek Antonín

机构信息

School of Biological and Chemical Sciences, Queen Mary, University of London, Mile End Road, London E1 4NS, United Kingdom.

出版信息

J Am Chem Soc. 2009 Aug 26;131(33):11788-800. doi: 10.1021/ja902744s.

Abstract

Photoinduced relaxation processes of five structurally characterized Pseudomonas aeruginosa Re(I)(CO)(3)(alpha-diimine)(HisX) (X = 83, 107, 109, 124, 126)Cu(II) azurins have been investigated by time-resolved (ps-ns) IR spectroscopy and emission spectroscopy. Crystal structures reveal the presence of Re-azurin dimers and trimers that in two cases (X = 107, 124) involve van der Waals interactions between interdigitated diimine aromatic rings. Time-dependent emission anisotropy measurements confirm that the proteins aggregate in mM solutions (D(2)O, KP(i) buffer, pD = 7.1). Excited-state DFT calculations show that extensive charge redistribution in the Re(I)(CO)(3) --> diimine (3)MLCT state occurs: excitation of this (3)MLCT state triggers several relaxation processes in Re-azurins whose kinetics strongly depend on the location of the metallolabel on the protein surface. Relaxation is manifested by dynamic blue shifts of excited-state nu(CO) IR bands that occur with triexponential kinetics: intramolecular vibrational redistribution together with vibrational and solvent relaxation give rise to subps, approximately 2, and 8-20 ps components, while the approximately 10(2) ps kinetics are attributed to displacement (reorientation) of the Re(I)(CO)(3)(phen)(im) unit relative to the peptide chain, which optimizes Coulombic interactions of the Re(I) excited-state electron density with solvated peptide groups. Evidence also suggests that additional segmental movements of Re-bearing beta-strands occur without perturbing the reaction field or interactions with the peptide. Our work demonstrates that time-resolved IR spectroscopy and emission anisotropy of Re(I) carbonyl-diimine complexes are powerful probes of molecular dynamics at or around the surfaces of proteins and protein-protein interfacial regions.

摘要

通过时间分辨(皮秒-纳秒)红外光谱和发射光谱研究了五种结构特征明确的铜绿假单胞菌Re(I)(CO)(3)(α-二亚胺)(HisX)(X = 83、107、109、124、126)Cu(II) 天青蛋白的光诱导弛豫过程。晶体结构揭示了Re-天青蛋白二聚体和三聚体的存在,在两种情况下(X = 107、124),它们涉及相互交错的二亚胺芳香环之间的范德华相互作用。时间相关的发射各向异性测量证实,这些蛋白质在毫摩尔浓度的溶液(重水、磷酸钾缓冲液,pD = 7.1)中会聚集。激发态密度泛函理论计算表明,在Re(I)(CO)(3)→二亚胺 (3)MLCT态中发生了广泛的电荷重新分布:该(3)MLCT态的激发触发了Re-天青蛋白中的几种弛豫过程,其动力学强烈依赖于金属标记在蛋白质表面的位置。弛豫表现为激发态ν(CO)红外波段的动态蓝移,其动力学为三指数形式:分子内振动重新分布以及振动和溶剂弛豫产生了亚皮秒、约2皮秒和约8 - 20皮秒的成分,而约10²皮秒的动力学归因于Re(I)(CO)(3)(菲)(亚胺)单元相对于肽链的位移(重新取向),这优化了Re(I)激发态电子密度与溶剂化肽基团的库仑相互作用。有证据还表明,含Re的β链会发生额外的片段运动,而不会干扰反应场或与肽的相互作用。我们的工作表明Re(I)羰基-二亚胺配合物的时间分辨红外光谱和发射各向异性是蛋白质表面或其周围以及蛋白质-蛋白质界面区域分子动力学的有力探针。

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