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首页> 外文期刊>The biochemical journal >Electron transfer from Phanerochaete chrysosporium cellobiose oxidase to equine cytochrome c and Pseudomonas aeruginosa cytochrome c-551
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Electron transfer from Phanerochaete chrysosporium cellobiose oxidase to equine cytochrome c and Pseudomonas aeruginosa cytochrome c-551

机译:电子从Phanerochaete chsssporium纤维二糖氧化酶转移到马细胞色素c和铜绿假单胞菌细胞色素c-551

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pThe electron-transfer reactions of cellobiose oxidase (CBO) have been investigated by conventional and by rapid-scan stopped-flow spectroscopy at pH 6.0. Analysis of the absorbance/time/wavelength matrix by Singular Value Decomposition (SVD) confirms earlier studies showing that cellobiose rapidly reduces the flavin group (7.7 s-1; cellobiose, 100 microM) which in turn slowly (0.2 s-1) reduces the cytochrome b moiety. In the presence of CBO, cellobiose reduces cytochromes c in a reaction that does not depend on oxygen or superoxide. The rate limit for this process is independent of the source of the cytochromes c and is identical with the rate of cytochrome b reduction. Rapid-mixing experiments show that cytochrome b may donate electrons very rapidly to either mammalian cytochrome c or bacterial cytochrome c-551. The reactions were second-order (kc = 1.75 x 10(7) M-1 x s-1; kc-551 = 4.3 x 10(6) M-1 x s-1; pH 6.0, 21 degrees C and I0.064) and strongly ionic-strength (I)-dependent: kc decreasing with I and kc-551 increasing with I. These results suggest the electron-transfer site near cytochrome b bears a significant negative charge. Equilibrium gel chromatography confirms that CBO oxidase and positively charged mammalian cytochrome c make stable complexes. These results are discussed in terms of a model suggesting an electron-transfer role for cytochrome b in vivo, possibly connected with radical-mediated cellulose breakdown./p
机译:纤维二糖氧化酶(CBO)的电子转移反应已通过常规方法和快速扫描停止流光谱在pH 6.0下进行了研究。通过奇异值分解(SVD)对吸光度/时间/波长矩阵的分析证实了较早的研究,即纤维二糖会迅速降低黄素基团(7.7 s-1;纤维二糖为100 microM),而纤维黄素基团会缓慢地(0.2 s-1)降低黄素基团。细胞色素b部分。在CBO存在下,纤维二糖会在不依赖氧或超氧化物的反应中还原细胞色素c。此过程的速率限制与细胞色素c的来源无关,并且与细胞色素b的还原速率相同。快速混合实验表明,细胞色素b可以非常迅速地将电子提供给哺乳动物细胞色素c或细菌细胞色素c-551。反应是二阶反应(kc = 1.75 x 10(7)M-1 x s-1; kc-551 = 4.3 x 10(6)M-1 x s-1; pH 6.0,21摄氏度,I0。 064)和强烈的离子强度(I)依赖性:kc随着I降低,kc-551随着I升高。这些结果表明,细胞色素b附近的电子转移位带有明显的负电荷。平衡凝胶色谱法证实CBO氧化酶和带正电荷的哺乳动物细胞色素c形成稳定的复合物。讨论了这些结果时所用的模型表明了细胞色素b在体内具有电子转移作用,并可能与自由基介导的纤维素分解有关。

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