首页> 外文期刊>Journal of bacteriology >Separation and distribution of thiosulfate-oxidizing enzyme, tetrathionate reductase, and thiosulfate reductase in extracts of marine heterotroph strain 16B.
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Separation and distribution of thiosulfate-oxidizing enzyme, tetrathionate reductase, and thiosulfate reductase in extracts of marine heterotroph strain 16B.

机译:海洋异养菌菌株16B提取物中硫代硫酸盐氧化酶,四硫酸盐还原酶和硫代硫酸盐还原酶的分离和分布。

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Thiosulfate-oxidizing enzyme (TSO), tetrathionate reductase (TTR), and thiosulfate reductase (TSR) were demonstrated in cell-free extracts of the marine heterotrophic thiosulfate-oxidizing bacterium strain 16B. Extracts prepared from cells cultured aerobically in the absence of thiosulfate or tetrathionate exhibited constitutive TSO and TTR activity which resided in the soluble fraction of ultracentrifuged crude extracts. Constitutive TSO and TTR cochromatographed on DEAE-Sephadex A-50, Cellex D, Sephadex G-150, and orange A dye-ligand affinity gels. Extracts prepared from cells cultured anaerobically with tetrathionate or aerobically with thiosulfate followed by oxygen deprivation showed an 11- to 30-fold increase in TTR activity, with no increase in TSO activity. The inducible TTR resided in both the ultracentrifuge pellet and supernatant fractions and was readily separated from constitutive TSO and TTR in the latter by DEAE-Sephadex chromatography. Inducible TTR exhibited TSR activity, which was also located in both membrane and soluble extract fractions and which cochromatographed with inducible TTR. The results indicate that constitutive TSO and TTR in marine heterotroph 16B represent reverse activities of the same enzyme whose major physiological function is thiosulfate oxidation. Evidence is also presented which suggests a possible association of inducible TTR and TSR in strain 16B.
机译:在海洋异养硫代硫酸盐氧化细菌菌株16B的无细胞提取物中证实了硫代硫酸盐氧化酶(TSO),四硫代硫酸盐还原酶(TTR)和硫代硫酸盐还原酶(TSR)。由在无硫代硫酸盐或四硫代酸盐的情况下需氧培养的细胞制备的提取物表现出本构的TSO和TTR活性,它们位于超速离心粗提物的可溶级分中。本构TSO和TTR在DEAE-Sephadex A-50,Cellex D,Sephadex G-150和橙色A染料-配体亲和凝胶上进行色谱分离。从用四硫酸盐厌氧培养或用硫代硫酸盐厌氧培养,然后剥夺氧气的细胞制备的提取物显示TTR活性提高了11至30倍,而TSO活性却没有提高。可诱导的TTR存在于超速离心沉淀和上清液级分中,并且容易通过DEAE-Sephadex色谱法与组成性TSO和TTR分离。诱导型TTR表现出TSR活性,该活性也位于膜和可溶性提取物级分中,并与诱导型TTR共色谱。结果表明,海洋异养菌16B中的组成性TSO和TTR代表相同酶的反向活性,该酶的主要生理功能是硫代硫酸盐氧化。还提供了证据,表明菌株16B中诱导型TTR和TSR可能相关。

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