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红球菌属及相关分类单元的放线菌对苯并噻吩和二苯并噻吩的脱硫作用

Desulphurisation of benzothiophene and dibenzothiophene by actinomycete organisms belonging to the genus Rhodococcus, and related taxa.

作者信息

Oldfield C, Wood N T, Gilbert S C, Murray F D, Faure F R

机构信息

Department of Biological Sciences, Napier University, Edinburgh, Scotland, UK.

出版信息

Antonie Van Leeuwenhoek. 1998 Jul-Oct;74(1-3):119-32. doi: 10.1023/a:1001724516342.

Abstract

Desulphurising enzymes remove the sulphur moiety from an organosulphur molecule leaving the carbon skeleton intact. Two kinds of desulphurisation reaction are recognised. The dibenzothiophene (DBT)-specific pathway desulphurises DBT to inorganic sulphite and 2-hydroxybiphenyl (HBP), and the benzothiophene (BTH)-specific pathway desulphurises BTH to 2-(2'-hydroxyphenyl)ethan 1-al (HPEal) and probably inorganic sulphite. The DBT-desulphurisation pathway was originally identified in Rhodococcus erythropolis strain IGTS8 (ATCC 53968), and the BTH-desulphurisation pathway in Gordonia sp. strain 213E (NCIMB 40816). These organisms do not further metabolise the organic product of desulphurisation. In this article current knowledge of the biochemistry and genetics of the desulphurisation enzymes is reviewed. The need for separate, DBT- and BTH-specific desulphurisation routes is rationalised in terms of the chemical differences between the two compounds. The desulphurisation pathway is compared with other microbial DBT-degrading enzyme systems. Finally some comments are made concerning the application of desulphurisation enzymes for fuel desulphurisation and on the relevance of these enzymes to the ecology of the mycolata (sensu Chun et al, 1996).

摘要

脱硫酶从有机硫分子中去除硫部分,使碳骨架保持完整。已确认有两种脱硫反应。二苯并噻吩(DBT)特异性途径将DBT脱硫生成无机亚硫酸盐和2-羟基联苯(HBP),苯并噻吩(BTH)特异性途径将BTH脱硫生成2-(2'-羟基苯基)乙醇醛(HPEal),可能还有无机亚硫酸盐。DBT脱硫途径最初是在红平红球菌IGTS8菌株(ATCC 53968)中发现的,BTH脱硫途径是在戈登氏菌属213E菌株(NCIMB 40816)中发现的。这些生物体不会进一步代谢脱硫的有机产物。本文综述了脱硫酶的生物化学和遗传学方面的现有知识。根据两种化合物之间的化学差异,解释了需要单独的DBT特异性和BTH特异性脱硫途径的原因。将脱硫途径与其他微生物DBT降解酶系统进行了比较。最后,对脱硫酶在燃料脱硫中的应用以及这些酶与分枝杆菌纲(根据Chun等人,1996年)生态学的相关性进行了一些评论。

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