Centola Fabio, Rinaldo Serena, Brunori Maurizio, Cutruzzolà Francesca
Department of Biochemical Sciences A. Rossi Fanelli, University of Rome La Sapienza, Italy.
FEBS J. 2006 Oct;273(19):4495-503. doi: 10.1111/j.1742-4658.2006.05455.x. Epub 2006 Sep 11.
In the denitrification pathway, Pseudomonas aeruginosa cytochrome cd1 nitrite reductase catalyzes the reduction of nitrite to nitric oxide; in vitro, this enzyme is also competent in the reduction of O2 to 2H2O. In this article, we present a comparative kinetic study of the O2 reaction in the wild-type nitrite reductase and in three site-directed mutants (Tyr10-->Phe, His369-->Ala and His327-->Ala/His369-->Ala) of the amino acid residues close to the d1 heme on the distal side. The results clearly indicate that His369 is the key residue in the control of reactivity, as its substitution with Ala, previously shown to affect the reduction of nitrite, also impairs the reaction with O2, affecting both the properties and lifespan of the intermediate species. Our findings allow the presentation of an overall picture for the reactivity of cytochrome cd1 nitrite reductase and extend our previous conclusion that the conserved distal histidines are essential for the binding to reduced d1 heme of different anions, whether a substrate such as nitrite, a ligand such as cyanide, or an intermediate in the O2 reduction. Moreover, we propose that His369 also exerts a protective role against degradation of the d1 heme, by preventing the formation and adverse effects of the reactive O2 species (never present in significant amounts in wild-type cytochrome cd1 nitrite reductase), a finding with clear physiological implications.
在反硝化途径中,铜绿假单胞菌细胞色素cd1亚硝酸盐还原酶催化亚硝酸盐还原为一氧化氮;在体外,这种酶也能够将O2还原为2H2O。在本文中,我们对野生型亚硝酸盐还原酶以及远端靠近d1血红素的三个氨基酸定点突变体(Tyr10→Phe、His369→Ala和His327→Ala/His369→Ala)中的O2反应进行了比较动力学研究。结果清楚地表明,His369是控制反应活性的关键残基,因为之前已表明其被丙氨酸取代会影响亚硝酸盐的还原,这也损害了与O2的反应,影响了中间物种的性质和寿命。我们的研究结果展现了细胞色素cd1亚硝酸盐还原酶反应活性的整体情况,并扩展了我们之前的结论,即保守的远端组氨酸对于不同阴离子与还原型d1血红素的结合至关重要,无论该阴离子是底物如亚硝酸盐、配体如氰化物还是O2还原过程中的中间体。此外,我们提出His369还对d1血红素起到保护作用,防止活性O2物种的形成及其不利影响(在野生型细胞色素cd1亚硝酸盐还原酶中从未大量存在),这一发现具有明确的生理学意义。