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Laccase-mediated oxidation of small organics: bifunctional roles for versatile applications

机译:漆酶介导的小有机物氧化:多功能应用中的双功能作用

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摘要

Laccases have been widely used in several biotechno-logical areas, including organic synthesis, bioremedia-tion, and pulp/textile bleaching. In most applications, the enzymatic actions start with single-electron oxidation of small organics followed by formation of the corresponding radicals. These radicals are subsequently involved in either oxidative coupling (i.e., bond formation) or bond cleavage of target organics. These bifunctional actions - catabolic versus anabolic - are readily identifiable in in vivo metabolic processes involving laccases. Here, we characterize the bifunctionality of laccase-mediated oxidation of small organics and present the view that knowledge of the biological functions of these metabolic processes in vivo can illuminate potential biotechnological applications of this bifunctionality.
机译:漆酶已广泛用于几个生物技术领域,包括有机合成,生物修复和纸浆/纺织品漂白。在大多数应用中,酶促作用始于小有机物的单电子氧化,然后形成相应的自由基。这些自由基随后参与目标有机物的氧化偶联(即,键形成)或键裂解。这些双功能作用-分解代谢与合成代谢-在涉及漆酶的体内代谢过程中很容易识别。在这里,我们表征了漆酶介导的小有机物氧化的双功能性,并提出了这样的观点,即体内这些代谢过程的生物学功能知识可以阐明这种双功能性的潜在生物技术应用。

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