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Elucidation of the metabolic pathway for dibenzothiophene desulphurization by Rhodococcus sp. strain IGTS8 (ATCC 53968)

机译:rhodococcus sp对二苯甲酸二苯甲酸噻吩脱硫的代谢途径阐明。菌株IgTS8(ATCC 53968)

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Summary: Rhodococcus sp. strain IGTS8 (ATCC 53968) is able to utilize dibenzothiophene (DBT) as a sole source of sulphur. The carbon skeleton of DBT is not metabolized and is conserved as 2-hydroxybiphenyl (HBP), which accumulates in the medium. This phenotype is due to the expression of the plasmid-encoded DBT-desulphurization (dsz) operon, which encodes three proteins, DszA, B and C. In this paper it is shown, using [35S]DBT radiolabelling studies, that sulphur is released in the form of inorganic sulphite. The pathway of DBT desulphurization is described in detail. In summary, DszC catalyses the stepwise S-oxidation of DBT, first to dibenzothiophene 5-oxide (DBTO) and then to dibenzothiophene 5,5-dioxide (DBTO2); DszA catalyses the conversion of DBTO2 to 2-(2′-hydroxyphenyl)benzene sulphinate (HBPSi-) and DszB catalyses the desulphination of HBPSi- to give HBP and sulphite. Studies with cell-free extracts show that DszA and DszC, but not DszB, require NADH for activity. 18O2-labelling studies show that each incorporated oxygen atom is derived directly from molecular oxygen. These results are consistent with the role of DszC as a mono-oxygenase, of DszA as an apparently unique enzyme which catalyses the reductive hydroxylation of DBTO2 leading to cleavage of the thiophene ring, and of DszB as an aromatic sulphinic acid hydrolase.
机译:概述:rhodococcus sp。菌株IgTS8(ATCC 53968)能够利用二苯并噻吩(DBT)作为硫的唯一来源。 DBT的碳骨架未代谢,被保守为2-羟基苯基(HBP),其在培养基中积聚。这种表型是由于质粒编码的DBT-脱硫(DSZ)操纵子的表达,其编码三种蛋白质,DSZA,B和C.在本文中,示出了使用[35s] DBT放射性标记研究,硫被释放以无机亚硫酸盐的形式。详细描述了DBT脱硫的途径。总之,DSZC催化DBT的逐步S氧化,首先至二苯并噻吩5-氧化物(DBTO),然后达到二苯并噻吩5,5-二氧化碳(DBTO2); DSZA催化DBTO2至2-(2'-羟基苯基)苯磺酸苄酯(HBPSI-)和DSZB催化剂的转化率 - 用于给予HBP和亚硫酸盐的脱硫。具有无细胞提取物的研究表明,DSZA和DSZC,但不是DSZB,需要NADH进行活性。 18O2标记研究表明,每个掺入的氧原子直接来自分子氧。这些结果与DSZC作为单氧酶的作用一致,DSZA作为明显独特的酶,其催化DBTO2的还原性羟基化导致噻吩环和DSZB作为芳族磺酸水解酶。

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