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来自真菌黄孢原毛平革菌和特异腐质霉的纤维二糖脱氢酶。特异腐质霉的一种黄素血红蛋白含有6-羟基-FAD作为主要的活性辅因子。

Cellobiose dehydrogenase from the fungi Phanerochaete chrysosporium and Humicola insolens. A flavohemoprotein from Humicola insolens contains 6-hydroxy-FAD as the dominant active cofactor.

作者信息

Igarashi K, Verhagen M F, Samejima M, Schülein M, Eriksson K E, Nishino T

机构信息

Department of Biomaterials Sciences, School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

J Biol Chem. 1999 Feb 5;274(6):3338-44. doi: 10.1074/jbc.274.6.3338.

Abstract

Cellobiose dehydrogenases (CDH) were purified from cellulose-grown cultures of the fungi Phanerochaete chrysosporium and Humicola insolens. The pH optimum of the cellobiose-cytochrome c oxidoreductase activity of P. chrysosporium CDH was acidic, whereas that of H. insolens CDH was neutral. The absorption spectra of the two CDHs showed them to be typical hemoproteins, but there was a small difference in the visible region. Limited proteolysis between the heme and flavin domains was performed to investigate the cofactors. There was no difference in absorption spectrum between the heme domains of P. chrysosporium and H. insolens CDHs. The midpoint potentials of heme at pH 7.0 were almost identical, and no difference in pH dependence was observed over the range of pH 3-9. The pH dependence of cellobiose oxidation by the flavin domains was similar to that of the native CDHs, indicating that the difference in the pH dependence of the catalytic activity between the two CDHs is because of the flavin domains. The absorption spectrum of the flavin domain from H. insolens CDH has absorbance maxima at 343 and 426 and a broad absorption peak at 660 nm, whereas that of P. chrysosporium CDH showed a normal flavoprotein spectrum. Flavin cofactors were extracted from the flavin domains and analyzed by high-performance liquid chromatography. The flavin cofactor from H. insolens was found to be a mixture of 60% 6-hydroxy-FAD and 40% FAD, whereas that from P. chrysosporium CDH was normal FAD. After reconstitution of the deflavo-proteins it was found that flavin domains containing 6-hydroxy-FAD were clearly active but their cellobiose oxidation rates were lower than those of flavin domains containing normal FAD. Reconstitution of flavin cofactor had no effect on the optimum pH. From these results, it is concluded that the pH dependence is not because of the flavin cofactor but is because of the protein molecule.

摘要

纤维二糖脱氢酶(CDH)是从在纤维素上生长的黄孢原毛平革菌(Phanerochaete chrysosporium)和特异腐质霉(Humicola insolens)的培养物中纯化得到的。黄孢原毛平革菌CDH的纤维二糖 - 细胞色素c氧化还原酶活性的最适pH呈酸性,而特异腐质霉CDH的最适pH呈中性。两种CDH的吸收光谱表明它们是典型的血红素蛋白,但在可见光区域存在细微差异。为了研究辅因子,对血红素和黄素结构域之间进行了有限的蛋白酶解。黄孢原毛平革菌和特异腐质霉CDH的血红素结构域的吸收光谱没有差异。pH 7.0时血红素的中点电位几乎相同,在pH 3 - 9范围内未观察到pH依赖性的差异。黄素结构域对纤维二糖氧化的pH依赖性与天然CDH相似,表明两种CDH催化活性的pH依赖性差异是由于黄素结构域。特异腐质霉CDH的黄素结构域的吸收光谱在343和426 nm处有最大吸光度,在660 nm处有一个宽吸收峰,而黄孢原毛平革菌CDH的吸收光谱显示出正常的黄素蛋白光谱。从黄素结构域中提取黄素辅因子并通过高效液相色谱进行分析。发现特异腐质霉的黄素辅因子是60%的6 - 羟基 - FAD和40%的FAD的混合物,而黄孢原毛平革菌CDH的黄素辅因子是正常的FAD。脱辅基蛋白重构后发现,含有6 - 羟基 - FAD的黄素结构域明显有活性,但其纤维二糖氧化速率低于含有正常FAD的黄素结构域。黄素辅因子的重构对最适pH没有影响。从这些结果可以得出结论,pH依赖性不是由于黄素辅因子,而是由于蛋白质分子。

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