首页> 外文OA文献 >Kinetics of inter-domain electron transfer in flavocytochrome cellobiose dehydrogenase from the white-rot fungus Phanerochaete chrysosporium.
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Kinetics of inter-domain electron transfer in flavocytochrome cellobiose dehydrogenase from the white-rot fungus Phanerochaete chrysosporium.

机译:白腐真菌Phanerochaete chrysosporium的黄细胞色素纤维二糖脱氢酶中域间电子转移的动力学。

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摘要

The pre-steady-state kinetics of inter-domain electron transfer in the extracellular flavocytochrome cellobiose dehydrogenase from Phanerochaete chrysosporium was studied using various values of pH and substrate concentration. Monitoring at the isosbestic point of each prosthetic group indicated that the reductive half-reactions of flavin and haem were biphasic and monophasic respectively. When the observed rates of the flavin and haem reactions were plotted against substrate concentration, the behaviour of the second phase of the flavin reduction was almost identical with that of haem reduction at all substrate concentrations and pH values tested, suggesting that the formation of flavin semiquinone and haem reduction involve the same electron transfer reaction. Although flavin reduction by cellobiose was observed in the range of pH 3.0-7.0, the velocity of the next electron transfer step decreased with increase of pH and was almost zero above pH 6.0. The second phase of flavin reduction and the haem reduction were inhibited similarly by high concentrations of the substrate, whereas the first phase of flavin reduction showed a hyperbolic relation to the cellobiose concentration. Increase in pH enhanced the substrate inhibition of haem reduction but not the initial flavin reduction. Moreover, the dissociation constant K(d) of flavin reduction and the substrate inhibition constant K(i) of haem reduction decreased similarly with an increase of pH. From these results, it is evident that binding of cellobiose to the active site inhibits electron transfer from flavin to haem.
机译:利用不同的pH值和底物浓度研究了Phanerochaete chrysosporium细胞外黄素细胞色素纤维二糖脱氢酶中域间电子转移的稳态前动力学。在每个修复组的等渗点进行监测表明,黄素和血红素的还原半反应分别是双相和单相的。当将观察到的黄素和血红素反应速率相对于底物浓度作图时,在所有受试底物浓度和pH值下,黄素还原第二相的行为与血红素还原几乎相同,这表明黄素半醌的形成和血红素还原涉及相同的电子转移反应。尽管在pH 3.0-7.0范围内观察到纤维二糖对黄素的还原作用,但下一电子转移步骤的速度随pH的升高而降低,在pH 6.0以上几乎为零。黄素减少和血红素减少的第二阶段同样受到高浓度底物的抑制,而黄素减少的第一阶段则与纤维二糖浓度呈双曲线关系。 pH值的升高会增强底物对血红素还原的抑制作用,而不是最初的黄素还原作用。此外,黄素还原的解离常数K(d)和血红素还原的底物抑制常数K(i)随pH的升高而降低。从这些结果可以看出,纤维二糖与活性位点的结合抑制了电子从黄素到血红素的转移。

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