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单体铜绿假单胞菌亚硝酸还原酶:制备、表征及动力学性质

Monomeric Pseudomonas aeruginosa nitrite reductase: preparation, characterization, and kinetic properties.

作者信息

Silvestrini M C, Tordi M G, Citro G, Vecchini P, Brunori M

机构信息

Dipartimento di Scienze Biochimiche, Università di Roma La Sapienza, Italia.

出版信息

J Inorg Biochem. 1995 Feb 15;57(3):169-81. doi: 10.1016/0162-0134(94)00021-2.

Abstract

Monomeric nitrite reductase in an active form has been prepared by controlled succinylation of the dimeric native enzyme of Pseudomonas aeruginosa and subsequent purification. The monomeric enzyme has an optical spectrum indistinguishable from that of the native enzyme. On the other hand, circular dichroic spectra in the heme and peptide absorption regions show differences with respect to the dimer that indicate that the chemical modification and/or the dissociation into monomers somewhat perturb the chromophores' environment and the secondary structure. The (negatively charged) monomer is unable to oxidize its physiological substrates, azurin and cytochrome c551. This loss of activity is not due to monomerization, but is linked to the total net charge of the succinylated molecule, which interestingly enough acquires the ability to oxidize efficiently eukaryotic cytochrome c (which is not a substrate of the native dimeric enzyme). Stopped-flow studies show that the reduced monomer reacts with oxygen with a kinetic pattern similar to that shown by the dimeric enzyme. However, a higher reaction rate in the bimolecular binding of oxygen and a much higher oxygen affinity than for the native enzyme are observed. The evidence reported in this paper indicates that the dimeric state of Pseudomonas nitrite reductase is not a prerequisite for the ferrocytochrome c-oxygen oxidoreductase activity of this enzyme.

摘要

通过对铜绿假单胞菌二聚体天然酶进行可控琥珀酰化并随后纯化,制备出了具有活性形式的单体亚硝酸还原酶。该单体酶的光谱与天然酶的光谱无法区分。另一方面,血红素和肽吸收区域的圆二色光谱显示出与二聚体的差异,这表明化学修饰和/或解离成单体在一定程度上扰乱了发色团的环境和二级结构。(带负电荷的)单体无法氧化其生理底物——天青蛋白和细胞色素c551。这种活性丧失并非由于单体化,而是与琥珀酰化分子的总净电荷有关,有趣的是,该分子获得了有效氧化真核细胞色素c的能力(真核细胞色素c不是天然二聚体酶的底物)。停流研究表明,还原态的单体与氧气反应的动力学模式与二聚体酶相似。然而,观察到氧气双分子结合的反应速率更高,且与天然酶相比,氧气亲和力也高得多。本文报道的证据表明,铜绿假单胞菌亚硝酸还原酶的二聚体状态并非该酶亚铁细胞色素c - 氧气氧化还原酶活性的先决条件。

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