Lorence R M, Gennis R B
Department of Chemistry, University of Illinois, Urbana 61801.
J Biol Chem. 1989 May 5;264(13):7135-40.
Oxygenated and peroxy states of the cytochrome d complex of Escherichia coli have been proposed as intermediates in the reaction mechanism of this ubiquinol oxidase. In this report, several stable states of the purified enzyme were examined spectroscopically at room temperature. As purified, the cytochrome d complex exists in an oxygenated state characterized by an absorbance band at 650 nm. Removal of oxygen results in loss of absorbance at this wavelength, which is restored upon the return of oxygen. The presence of one oxygen molecule in the oxygenated state was quantified by measuring oxygen released when excess hydrogen peroxide was added to the oxygenated state by passage of argon generates a "partially reduced" state with an absorbance peak at 628 nm, apparently due to reduced cytochrome d. Addition of equimolar hydrogen peroxide to the fully oxidized state produces the peroxy state. This peroxy state is also formed upon addition of excess hydrogen peroxide to the oxygenated state via a stable intermediate termed "peroxy intermediate." It is likely that 1) the oxygenated state consists of one molecule of oxygen bound to reduced heme d, and 2) there are at least two stable states that have bound peroxide at room temperature, the peroxy state and a newly discovered peroxy intermediate.
大肠杆菌细胞色素d复合物的氧化态和过氧态被认为是这种泛醇氧化酶反应机制中的中间体。在本报告中,在室温下通过光谱法研究了纯化酶的几种稳定状态。纯化后的细胞色素d复合物以氧化态存在,其特征是在650nm处有一个吸收带。去除氧气会导致该波长处的吸光度损失,当氧气重新加入时吸光度会恢复。通过测量向氧化态加入过量过氧化氢时释放的氧气,定量了氧化态中一个氧分子的存在。通过氩气吹扫向氧化态加入过量过氧化氢会产生一个“部分还原”状态,在628nm处有一个吸收峰,这显然是由于细胞色素d被还原所致。向完全氧化态加入等摩尔过氧化氢会产生过氧态。通过一个称为“过氧中间体”的稳定中间体,向氧化态加入过量过氧化氢也会形成这种过氧态。很可能1)氧化态由一个与还原型血红素d结合的氧分子组成,2)在室温下至少有两种结合了过氧化物的稳定状态,即过氧态和新发现的过氧中间体。