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卤代代谢产物的微生物生物合成。

Microbial biosynthesis of halometabolites.

作者信息

van Pée K H

机构信息

Institut für Biochemie, Technische Universität Dresden, Germany.

出版信息

Arch Microbiol. 2001 Apr;175(4):250-8. doi: 10.1007/s002030100263.

Abstract

Halometabolites are compounds that are commonly found in nature and they are produced by many different organisms. Whereas bromometabolites can mainly be found in the marine environment, chlorometabolites are predominately produced by terrestrial organisms; iodo- and fluorocompounds are only produced infrequently. The halogen atoms are incorporated into organic compounds by enzyme-catalyzed reactions with halide ions as the halogen source. For over 40 years haloperoxidases were thought to be responsible for the incorporation of halogen atoms into organic molecules. However, haloperoxidases lack substrate specificity and regioselectivity, and the connection of haloperoxidases with the in vivo formation of halometabolites has never been demonstrated. Recently, molecular genetic investigations showed that, at least in bacteria, a different class of halogenases is involved in halometabolite formation. These halogenases were found to require FADH2, which can be produced from FAD and NADH by unspecific flavin reductases. In addition to FADH2, oxygen and halide ions (chloride and bromide) are necessary for the halogenation reaction. The FADH2-dependent halogenases show substrate specificity and regioselectivity, and their genes have been detected in many halometabolite-producing bacteria, suggesting that this type of halogenating enzymes constitutes the major source for halometabolite formation in bacteria and possibly also in other organisms.

摘要

卤代代谢产物是自然界中常见的化合物,由许多不同的生物体产生。溴代代谢产物主要存在于海洋环境中,而氯代代谢产物主要由陆地生物体产生;碘代和氟代化合物很少产生。卤素原子通过以卤离子为卤素源的酶催化反应掺入有机化合物中。四十多年来,人们一直认为卤过氧化物酶负责将卤素原子掺入有机分子中。然而,卤过氧化物酶缺乏底物特异性和区域选择性,并且卤过氧化物酶与卤代代谢产物体内形成之间的联系从未得到证实。最近,分子遗传学研究表明,至少在细菌中,另一类卤化酶参与卤代代谢产物的形成。发现这些卤化酶需要FADH2,FADH2可由FAD和NADH通过非特异性黄素还原酶产生。除FADH2外,卤化反应还需要氧气和卤离子(氯离子和溴离子)。依赖FADH2的卤化酶表现出底物特异性和区域选择性,并且在许多产生卤代代谢产物的细菌中检测到了它们的基因,这表明这种类型的卤化酶构成了细菌以及可能其他生物体中卤代代谢产物形成的主要来源。

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