首页> 美国卫生研究院文献>Journal of Bacteriology >Molybdenum and vanadium do not replace tungsten in the catalytically active forms of the three tungstoenzymes in the hyperthermophilic archaeon Pyrococcus furiosus.
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Molybdenum and vanadium do not replace tungsten in the catalytically active forms of the three tungstoenzymes in the hyperthermophilic archaeon Pyrococcus furiosus.

机译:在超嗜热古生火球菌中钨和钨不能替代三种钨酶的催化活性形式的钨。

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摘要

Three different types of tungsten-containing enzyme have been previously purified from Pyrococcus furiosus (optimum growth temperature, 100 degrees C): aldehyde ferredoxin oxidoreductase (AOR), formaldehyde ferredoxin oxidoreductase (FOR), and glyceraldehyde-3-phosphate oxidoreductase (GAPOR). In this study, the organism was grown in media containing added molybdenum (but not tungsten or vanadium) or added vanadium (but not molybdenum or tungsten). In both cell types, there were no dramatic changes compared with cells grown with tungsten, in the specific activities of hydrogenase, ferredoxin:NADP oxidoreductase, or the 2-keto acid ferredoxin oxidoreductases specific for pyruvate, indolepyruvate, 2-ketoglutarate, and 2-ketoisovalerate. Compared with tungsten-grown cells, the specific activities of AOR, FOR, and GAPOR were 40, 74, and 1%, respectively, in molybdenum-grown cells, and 7, 0, and 0%, respectively, in vanadium-grown cells. AOR purified from vanadium-grown cells lacked detectable vanadium, and its tungsten content and specific activity were both ca. 10% of the values for AOR purified from tungsten-grown cells. AOR and FOR purified from molybdenum-grown cells contained no detectable molybdenum, and their tungsten contents and specific activities were > 70% of the values for the enzymes purified from tungsten-grown cells. These results indicate that P. furiosus uses exclusively tungsten to synthesize the catalytically active forms of AOR, FOR, and GAPOR, and active molybdenum- or vanadium-containing isoenzymes are not expressed when the cells are grown in the presence of these other metals.
机译:先前已从激烈热球菌(最适生长温度100摄氏度)中纯化了三种不同类型的含钨酶:醛铁氧还蛋白氧化还原酶(AOR),甲醛铁氧还蛋白氧化还原酶(FOR)和3甘油醛-磷酸氧化还原酶(GAPOR)。在这项研究中,有机体生长在含有添加的钼(但不含钨或钒)或含有钒(但不含钼或钨)的培养基中。在两种细胞类型中,与用钨生长的细胞相比,对于丙酮酸,吲哚丙酮酸,2-酮戊二酸和2-酮酸而言,氢化酶,铁氧还蛋白:NADP氧化还原酶或2-酮酸铁氧还蛋白氧化还原酶的比活性没有明显变化。酮异戊酸酯。与钨生长的细胞相比,在钼生长的细胞中,AOR,FOR和GAPOR的比活分别为40%,74%和1%,在钒生长的细胞中分别为7%,0%和0% 。从钒生长的细胞中纯化的AOR缺乏可检测到的钒,并且其钨含量和比活性均为约。从钨生长的细胞中纯化的AOR值的10%。从钼生长的细胞中纯化的AOR和FOR不含可检测的钼,并且它们的钨含量和比活度是从钨生长的细胞中纯化的酶的> 70%。这些结果表明,P。furiosus仅使用钨来合成AOR,FOR和GAPOR的催化活性形式,并且当细胞在这些其他金属的存在下生长时,不表达活性的含钼或钒的同工酶。

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