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漆酶:重新审视的酶及重新定义的功能。

Laccase: enzyme revisited and function redefined.

机构信息

Lignocellulose Biotechnology Laboratory, Department of Microbiology, University of Delhi South Campus, Benito Juarez Road, New Delhi, 110 021 India.

出版信息

Indian J Microbiol. 2008 Sep;48(3):309-16. doi: 10.1007/s12088-008-0028-z. Epub 2008 Jun 18.

Abstract

One enzyme, one physiological role, that's how most scientists have traditionally looked at it but there is a growing appreciation that some enzymes "moonlight" i.e. in addition to their "primary" catalytic function, they carry other functions as well. Moonlighting refers to a protein that has multiple functions, which are not because of gene fusion; splice variants or multiple proteolytic fragments. Until recently laccases were reported from eukaryotes, e.g. fungi, plants, insect. However there is some evidence for its existence in prokaryotes, a protein with typical features of multi-copper oxidase enzyme family. The present available knowledge of its structure provides a glimpse of its plasticity, revealing a multitude of binding sites responsible for multifunctional activity. Laccase represents an example of a 'moonlighting' protein that overcomes the one gene-one structure-one function concept to follow the changes of the organism in its physiological and pathological conditions. It is wide spread in plants, where it is involved in biosynthesis of lignin; in fungi it is involved in lignin degradation, development associated pigmentation (melanin synthesis), detoxification and pathogenesis, and in bacteria, laccases are involved in the synthesis of endospore coat protein (cot A).

摘要

传统上,大多数科学家认为一种酶对应一种生理作用,但现在人们越来越认识到,有些酶具有“双重功能”,即除了主要的催化功能外,还具有其他功能。“双重功能”是指一种具有多种功能的蛋白质,这些功能不是由于基因融合、剪接变体或多个蛋白水解片段产生的。直到最近,人们才在真核生物(如真菌、植物、昆虫)中发现漆酶。然而,有一些证据表明它也存在于原核生物中,这种蛋白质具有典型的多铜氧化酶家族特征。目前对其结构的了解提供了一个 glimpses 其可塑性的机会,揭示了许多负责多功能活性的结合位点。漆酶是“双重功能”蛋白质的一个例子,它克服了一个基因对应一种结构对应一种功能的概念,以适应生物体在生理和病理条件下的变化。它广泛存在于植物中,参与木质素的生物合成;在真菌中,它参与木质素降解、发育相关的色素沉着(黑色素合成)、解毒和发病机制,而在细菌中,漆酶参与内孢子衣蛋白(cotA)的合成。

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