首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Analysis of resonance Raman data on the blue copper site in pseudoazurin: Excited state π and σ charge transfer distortions and their relation to ground state reorganization energy
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Analysis of resonance Raman data on the blue copper site in pseudoazurin: Excited state π and σ charge transfer distortions and their relation to ground state reorganization energy

机译:假天青素中蓝铜位上的共振拉曼数据分析:激发态π和σ电荷转移畸变及其与基态重组能的关系

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摘要

The short Cu ~(2+)-S(Met) bond in pseudoazurin (PAz) results in the presence of two relatively intense S _p(π) and S _p(σ) charge transfer (CT) transitions. This has enabled resonance Raman (rR) data to be obtained for each excited state. The rR data show very different intensity distribution patterns for the vibrations in the 300-500 cm ~(- 1) region. Time-dependent density functional theory (TDDFT) calculations have been used to determine that the change in intensity distribution between the S _p(π) and S _p(σ) excited states reflects the differential enhancement of S(Cys) backbone modes with Cu-S(Cys)-C _β out-of-plane (oop) and in-plane (ip) bend character in their respective potential energy distributions (PEDs). The rR excited state distortions have been related to ground state reorganization energies (λs) and predict that, in addition to M-L stretches, the Cu-S(Cys)-C _β oop bend needs to be considered. DFT calculations predict a large distortion in the Cu-S(Cys)-C _β oop bending coordinate upon reduction of a blue copper (BC) site; however, this distortion is not present in the X-ray crystal structures of reduced BC sites. The lack of Cu-S(Cys)-C _β oop distortion upon reduction corresponds to a previously unconsidered constraint on the thiolate ligand orientation in the reduced state of BC proteins and can be considered as a contribution to the entatic/rack nature of BC sites.
机译:假天青素(PAz)中短的Cu〜(2 +)-S(Met)键导致存在两个相对较强的S _p(π)和S _p(σ)电荷转移(CT)跃迁。这使得能够为每个激发态获得共振拉曼(rR)数据。 rR数据显示了300-500 cm〜(-1)区域中振动的强度分布模式非常不同。时变密度泛函理论(TDDFT)计算已用于确定S _p(π)和S _p(σ)激发态之间的强度分布变化反映了Cu(- S(Cys)-C_β各自的势能分布(PED)中的面外(oop)和面内(ip)弯曲特征。 rR激发态畸变与基态重组能(λs)有关,并预测,除了M-L延伸之外,还需要考虑Cu-S(Cys)-C_βoop弯曲。 DFT计算预测,在减少蓝铜(BC)位置后,Cu-S(Cys)-C_βoop弯曲坐标会出现较大的变形;然而,这种变形在减少的BC位点的X射线晶体结构中不存在。还原后缺乏Cu-S(Cys)-C _oop畸变对应于先前未考虑的BC蛋白还原状态下硫醇盐配体取向的限制,可以认为是对BC位点的熵/机架性质的贡献。

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