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Cellobiose dehydrogenase. Possible roles and importance for pulp and paper biotechnology

机译:纤维二糖脱氢酶。制浆和造纸生物技术的可能作用和重要性

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The FAD/heme enzyme cellobiose dehydrogenase (CDH) has been frequently isolated form several white-rot fungi, but is also produced by a few brown-rot fungi. CDH is a sugar oxidises that oxidises cellobiose to cellobiono-1,5-lactone and reduces a great number of electron acceptors such as quinones, phenoxy and cation radicals, Fe(III), cytochrome c and molecular oxygen. We suggest that CDH is involved in lignin degradation as this enzyme can reduce phenoxy radicals, and thereby regulate lignin polymerisation/depolymerisation. Furthermore, we have shown that P. chrysosporium can produce CDH together with MnP and LiP, under conditions where lignin degradation. measured as [~(14)C] DHP mineralization, occurs and demonstrated how active CDH may help complete the catalytic cycles of the peroxidases when their natural substrates are not available. Possible physiological roles of CDH on the mechanisms of lignin degradation and its potential for pulp and paper biotechnology are presented.
机译:FAD /血红素纤维二糖脱氢酶(CDH)经常从几种白腐真菌中分离出来,但也由几种棕腐真菌产生。 CDH是一种糖类氧化物,可将纤维二糖氧化为1,5-内酯,并还原大量电子受体,例如醌,苯氧基和阳离子自由基,Fe(III),细胞色素c和分子氧。我们建议CDH参与木质素降解,因为该酶可以减少苯氧基自由基,从而调节木质素聚合/解聚。此外,我们已经证明,在木质素降解的条件下,金孢假单胞菌可以与MnP和LiP一起产生CDH。以[〜(14)C] DHP的矿化度进行测量,并证明了活性CDH在没有天然底物时如何帮助完成过氧化物酶的催化循环。提出了CDH在木质素降解机理上的可能生理作用及其在纸浆和造纸生物技术中的潜力。

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