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通过对来自铜绿假单胞菌的半还原、全还原和全还原一氧化碳细胞色素c-551过氧化物酶进行光解所制备的物种的性质。

The nature of species prepared by photolysis of half-reduced, fully reduced and fully reduced carbonmonoxy-cytochrome c-551 peroxidase from Pseudomonas aeruginosa.

作者信息

Greenwood C, Foote N, Peterson J, Thomson A J

出版信息

Biochem J. 1984 Oct 15;223(2):379-91. doi: 10.1042/bj2230379.

Abstract

The half-reduced, fully reduced and fully reduced CO-bound forms of the enzyme cytochrome c-551 peroxidase isolated from Pseudomonas aeruginosa were examined by a combination of low-temperature absorption and magnetic-circular-dichroism spectroscopy. Deliberate low-temperature (4.2K) photolysis of these forms of the enzyme, in all of which the high-potential haem is in the ferrous state, revealed that this haem group, assigned to have a histidine-methionine ligand set, is photosensitive. The photolabile ligand is most likely to be the methionine residue, and the product of photolysis, namely the high-spin (S = 2) ferrous form, is stable at low temperature (4.2K). Warming to approx. 20K allows thermal recombination to occur, restoring the low-spin (S = 0) state. The low-potential haem (bis-histidine ligation) is photoinert in both ferric and ferrous states; however, the photosensitive CO adduct of this centre cannot be maintained as the photolysed (S = 2) product at 4.2K. This surprising observation may be due to quantum-mechanical tunnelling of the CO through the activation barrier even at 4.2K, implying that the activation barrier to thermal recombination is both narrow and low. Low-temperature absorption spectroscopy reveals that the high-potential haem has a very characteristic low-spin ferrous spectrum with intense highly structured beta- and split alpha-bands, whereas the spectrum of the low-potential ferrous haem contains alpha- and beta-bands devoid of fine structure.

摘要

通过低温吸收光谱和磁圆二色光谱相结合的方法,对从铜绿假单胞菌中分离出的细胞色素c-551过氧化物酶的半还原态、全还原态和全还原态一氧化碳结合形式进行了研究。对这些酶形式进行有意的低温(4.2K)光解,在所有这些形式中,高电位血红素处于亚铁状态,结果表明,这个被认为具有组氨酸-甲硫氨酸配体组的血红素基团是光敏的。光不稳定配体最有可能是甲硫氨酸残基,光解产物即高自旋(S = 2)亚铁形式在低温(4.2K)下是稳定的。升温至约20K会发生热重组,恢复低自旋(S = 0)状态。低电位血红素(双组氨酸配位)在三价铁和亚铁状态下都是光惰性的;然而,这个中心的光敏一氧化碳加合物在4.2K时不能保持为光解后的(S = 2)产物。这一惊人的观察结果可能是由于即使在4.2K时一氧化碳也能通过活化能垒进行量子力学隧穿,这意味着热重组的活化能垒既窄又低。低温吸收光谱表明,高电位血红素具有非常典型的低自旋亚铁光谱,有强烈的高度结构化的β带和分裂的α带,而低电位亚铁血红素的光谱包含没有精细结构的α带和β带。

相似文献

本文引用的文献

1
The Oxygen Tension of Arterial Blood.动脉血的氧张力
J Physiol. 1896 Dec 3;20(6):497-520. doi: 10.1113/jphysiol.1896.sp000634.
2
Photosensitivity of haem compounds.血红素化合物的光敏性。
Nature. 1957 Dec 21;180(4599):1416-7. doi: 10.1038/1801416b0.

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