G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, Pushchino, Moscow Region, Russia.
Pushchino State Institute of Life Sciences, Pushchino, Moscow Region, Russia.
J Basic Microbiol. 2018 Apr;58(4):322-330. doi: 10.1002/jobm.201700399. Epub 2018 Feb 8.
This work investigated the regulatory role of the interaction between cellobiose dehydrogenase (CDH) and β-glucosidase (β-GLU) in the conversion of cellobiose into cellobionolactone or glucose in vitro. To study the regulation, the two enzymes were isolated from the culture medium of the fungus Cerrena unicolor grown on a medium with microcrystalline cellulose. The enzymes were obtained in an electrophoretically homogeneous state. Their properties were studied. Both enzymes had acidic pH optima and were more stable in the acidic pH range. CDH was moderately thermostable, while β-GLU had a low thermostability. Both enzymes efficiently catalyzed the transformation of cellobiose. A mixture of CDH and β-GLU transformed cellobiose to glucose or cellobionolactone in the presence of various concentrations of laccase and hydroquinone. Formation of glucose and cellobionolactone in vitro during the competition between CDH and β-GLU for cellobiose depended on the availability of quinones, formed as a result of the interaction of laccase and hydroquinone, for CDH. At low laccase and hydroquinone concentrations, the formation of glucose was found to predominate over that of cellobionolactone. The possible physiological role of the enzymes' interaction is discussed.
本研究考察了纤维二糖脱氢酶(CDH)与β-葡萄糖苷酶(β-GLU)相互作用在体外将纤维二糖转化为纤维二糖醇或葡萄糖中的调控作用。为了研究调控机制,从生长在微晶纤维素培养基上的彩绒革盖菌(Cerrena unicolor)的培养液中分离出这两种酶。两种酶均以电泳均一的状态获得,并对其性质进行了研究。两种酶的最适 pH 均呈酸性,且在酸性 pH 范围内更稳定。CDH 具有中等热稳定性,而β-GLU 的热稳定性较低。两种酶均能有效地催化纤维二糖的转化。在漆酶和对苯二酚存在的情况下,CDH 和 β-GLU 的混合物将纤维二糖转化为葡萄糖或纤维二糖醇。在纤维二糖竞争中,CDH 和 β-GLU 体外形成葡萄糖和纤维二糖醇取决于漆酶和对苯二酚相互作用形成的醌类物质对 CDH 的可用性。在低漆酶和对苯二酚浓度下,发现葡萄糖的形成优先于纤维二糖醇的形成。讨论了酶相互作用的可能生理作用。