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基于含时密度泛函理论对难光解离血红素-一氧化碳加合物激发态性质的研究

Excited state property of hardly photodissociable heme-CO adduct studied by time-dependent density functional theory.

作者信息

Ohta Takehiro, Pal Biswajit, Kitagawa Teizo

机构信息

Okazaki Institute for Integrative Bioscience, National Institutes of Natural Sciences, Okazaki, Aichi 444-8787, Japan.

出版信息

J Phys Chem B. 2005 Nov 10;109(44):21110-7. doi: 10.1021/jp052158h.

Abstract

While most of CO-bound hemes are easily photodissociated with a quantum yield of nearly unity, we occasionally encounter a CO-heme which appears hardly photodissociable under the ordinary measurement conditions of resonance Raman spectra using CW laser excitation and a spinning cell. This study aims to understand such hemes theoretically, that is, the excited-state properties of the five-coordinate heme-CO adduct (5cH) as well as the 6c heme-CO adduct (6cH) with a weak axial ligand. Using a hybrid density functional theory, we scrutinized the properties of the ground and excited spin states of the computational models of a 5cH and a water-ligated 6cH (6cH-H(2)O) and compared these properties with those of a photodissociable imidazole-ligated 6cH (6cH-Im). Jahn-Teller softening for the Fe-C-O bending potential in the a(1)-e excited state was suggested. The excited-state properties of 6cH-Im and 5cH were further studied with time-dependent DFT theory. The reaction products of 6cH-Im and 5cH were assumed to be quintet and triplet states, respectively. According to the time-dependent DFT calculations, the Q excited state of 6cH-Im, which is initially a pure pi-pi state, crosses the Fe-CO dissociative state (2A') without large elongation of the Fe-CO bond. In contrast, the Q state of the 5cH does not cross the Fe-CO dissociative state but results in the formation of the excited spin state with a bent Fe-C-O. Consequently, photoisomerization from linear to bent Fe-C-O in the 5cH is a likely mechanism for apparent nonphotodissociation.

摘要

虽然大多数与一氧化碳结合的血红素很容易以接近单位量子产率进行光解离,但我们偶尔会遇到一种血红素一氧化碳加合物,在使用连续波激光激发和旋转样品池的共振拉曼光谱的常规测量条件下,它似乎很难发生光解离。本研究旨在从理论上理解这类血红素,即五配位血红素一氧化碳加合物(5cH)以及带有弱轴向配体的六配位血红素一氧化碳加合物(6cH)的激发态性质。我们使用杂化密度泛函理论,仔细研究了5cH和水配位的6cH(6cH-H₂O)计算模型的基态和激发自旋态的性质,并将这些性质与可光解离的咪唑配位的6cH(6cH-Im)的性质进行了比较。研究表明,在a₁ - e激发态下,Fe-C-O弯曲势存在 Jahn-Teller 软化现象。我们还利用含时密度泛函理论进一步研究了6cH-Im和5cH的激发态性质。假设6cH-Im和5cH的反应产物分别为五重态和三重态。根据含时密度泛函计算结果,6cH-Im最初为纯π-π态的Q激发态,在Fe-CO键没有大幅伸长的情况下越过Fe-CO解离态(²A')。相比之下,5cH的Q态不会越过Fe-CO解离态,而是导致形成具有弯曲Fe-C-O的激发自旋态。因此,5cH中从线性Fe-C-O到弯曲Fe-C-O的光异构化可能是导致明显非光解离的一种机制。

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