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通过双波长多通道光谱和闪光光解研究固态完全还原的膜结合细胞色素氧化酶与一氧化碳反应的动力学和热力学。

The kinetics and thermodynamics of the reaction of solid-state fully reduced membrane-bound cytochrome oxidase with carbon monoxide as studied by dual-wavelength multichannel spectroscopy and flash photolysis.

作者信息

Clore M, Chance E M

出版信息

Biochem J. 1978 Nov 1;175(2):709-25. doi: 10.1042/bj1750709.

Abstract
  1. The results of non-linear optimization studies on the mechanism of reaction of solid-state fully reduced membrane-bound cytochrome oxidase with CO over the 178--203 K range are presented. The analysis is carried out on data obtained by dual-wavelength multichannel spectroscopy at three wavelength pairs (444--463 nm, 590--630 nm and 608--630 nm), which yield three distinct progress curves. The only model that satisfies the triple requirement of a standard deviation within the standard error of the data, a random distribution of residuals and good determination of the optimized parameters is a two-species sequential mechanism: flash photolysis yields unliganded cytochrome oxidase and free CO, which then recombine to form species Ic; Ic is then converted into species IIc, which is identical with the cytochrome oxidase-CO complex existing before flash photolysis. All the thermodynamic parameters describing this model are calculated. 2. On the basis of the data obtained from this paper, together with data from potentiometric studies, magnetic susceptibility measurements and i.r. spectroscopy, the chemical identity of the species is suggested.
摘要
  1. 本文给出了在178 - 203K范围内对固态完全还原的膜结合细胞色素氧化酶与CO反应机制进行非线性优化研究的结果。分析是基于双波长多通道光谱法在三对波长(444 - 463nm、590 - 630nm和608 - 630nm)下获得的数据进行的,这些数据产生了三条不同的进程曲线。唯一满足数据标准误差内标准差、残差随机分布以及优化参数良好确定这三个要求的模型是一种双物种顺序机制:闪光光解产生未配位的细胞色素氧化酶和游离CO,然后它们重新结合形成物种Ic;Ic随后转化为物种IIc,物种IIc与闪光光解前存在的细胞色素氧化酶 - CO复合物相同。计算了描述该模型的所有热力学参数。2. 根据本文获得的数据,结合电位滴定研究、磁化率测量和红外光谱的数据,推测了这些物种的化学特性。

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