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铜绿假单胞菌细胞色素c-551氧化酶与氰化钾的反应

The reactions of Pseudomonas cytochrome c-551 oxidase with potassium cyanide.

作者信息

Barber D, Parr S R, Greenwood C

出版信息

Biochem J. 1978 Oct 1;175(1):239-49. doi: 10.1042/bj1750239.

Abstract

The binding of cyanide to both oxidized and ascorbate-reduced forms of Pseudomonas cytochrome c-551 oxidase was investigated. Spectral studies on the oxidized enzyme and its apoprotein showed that the ligand can bind to both the c and d, haem components of the molecule, and kinetic observations indicated that both chromophores reacted, under a variety of conditions, with very similar rates. Cyanide combination velocities were dependent on ligand concentration, and increasing the pH also accelerated the reaction; the second-order rate constant was estimated as approx. 0.2M-1 . s-1 at pH 7.0. The binding of cyanide to the protein was observed to have a considerable influence on reduction of the enzyme by ascorbate. Spectral and kinetic observations have revealed that the species haem d13+-cyanide and any unbound haem c may react relatively rapidly with the reductant, but the behaviour of cyanide-bound haem c indicates that it may not be reduced without prior dissociation of the ligand, which occurs relatively slowly. The reaction of reduced Pseudomonas cytochrome oxidase with cyanide is radically different from that of the oxidized protein. In this case the ligand only binds to the haem d1 component and reacts much more rapidly. Stopped-flow kinetic measurements showed the binding to be biphasic in form. Both the rates of these processes were dependent on cyanide concentration, with the fast phase having a second-order rate constant of 9.3 X 10(5) M-1 . s-1 and the slow phase one of 2.3 X 10(5) M-1 . s-1. The relative proportions of the two phases also showed a dependency on cyanide concentration, the slower phase increasing as the cyanide concentration decreased. Computer simulations indicate that a reaction scheme originally proposed for the reaction of the enzyme with CO is capable of providing a reasonable explanation of the experimental results. Static-titration data of the reduced enzyme with with cyanide indicated that the binding was non-stoicheiometric, the ligand-binding curve being sigmoidal in shape. A Hill plot of the results yielded a Hill coefficient of 2.6.

摘要

研究了氰化物与铜绿假单胞菌细胞色素c-551氧化酶的氧化形式和抗坏血酸还原形式的结合情况。对氧化酶及其脱辅基蛋白的光谱研究表明,配体可与分子中的c型和d型血红素成分结合,动力学观察表明,在各种条件下,两种发色团的反应速率非常相似。氰化物结合速度取决于配体浓度,提高pH值也会加速反应;在pH 7.0时,二级反应速率常数估计约为0.2M-1·s-1。观察到氰化物与蛋白质的结合对酶被抗坏血酸还原有相当大的影响。光谱和动力学观察表明,血红素d13+-氰化物和任何未结合的血红素c可能与还原剂相对快速反应,但氰化物结合的血红素c的行为表明,在配体预先解离之前它可能不会被还原,而配体解离相对较慢。还原型铜绿假单胞菌细胞色素氧化酶与氰化物的反应与氧化型蛋白质的反应截然不同。在这种情况下,配体仅与血红素d1成分结合且反应快得多。停流动力学测量表明结合呈双相形式。这两个过程的速率都取决于氰化物浓度,快相的二级反应速率常数为9.3×10(5)M-1·s-1,慢相的为2.3×10(5)M-1·s-1。两个相的相对比例也显示出对氰化物浓度的依赖性,随着氰化物浓度降低,慢相增加。计算机模拟表明,最初提出的该酶与CO反应的反应方案能够对实验结果提供合理的解释。用氰化物对还原酶进行静态滴定的数据表明结合是非化学计量的,配体结合曲线呈S形。结果的希尔图得出希尔系数为2.6。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2560/1186060/d49587fcb6f9/biochemj00477-0244-a.jpg

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