首页> 外文OA文献 >Membrane-Bound, 2-Keto-d-Gluconate-Yielding d-Gluconate Dehydrogenase from “Gluconobacter dioxyacetonicus” IFO 3271: Molecular Properties and Gene Disruption▿
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Membrane-Bound, 2-Keto-d-Gluconate-Yielding d-Gluconate Dehydrogenase from “Gluconobacter dioxyacetonicus” IFO 3271: Molecular Properties and Gene Disruption▿

机译:膜结合的2-酮-d-葡萄糖酸-产生的d-葡萄糖酸脱氢酶,来自“ Gluconobacter dioxyacetonicus” IFO 3271:分子性质和基因破坏

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摘要

Most Gluconobacter species produce and accumulate 2-keto-d-gluconate (2KGA) and 5KGA simultaneously from d-glucose via GA in culture medium. 2KGA is produced by membrane-bound flavin adenine dinucleotide-containing GA 2-dehydrogenase (FAD-GADH). FAD-GADH was purified from “Gluconobacter dioxyacetonicus” IFO 3271, and N-terminal sequences of the three subunits were analyzed. PCR primers were designed from the N-terminal sequences, and part of the FAD-GADH genes was cloned as a PCR product. Using this PCR product, gene fragments containing whole FAD-GADH genes were obtained, and finally the nucleotide sequence of 9,696 bp was determined. The cloned sequence had three open reading frames (ORFs), gndS, gndL, and gndC, corresponding to small, large, and cytochrome c subunits of FAD-GADH, respectively. Seven other ORFs were also found, one of which showed identity to glucono-δ-lactonase, which might be involved directly in 2KGA production. Three mutant strains defective in either gndL or sldA (the gene responsible for 5KGA production) or both were constructed. Ferricyanide-reductase activity with GA in the membrane fraction of the gndL-defective strain decreased by about 60% of that of the wild-type strain, while in the sldA-defective strain, activity with GA did not decrease and activities with glycerol, d-arabitol, and d-sorbitol disappeared. Unexpectedly, the strain defective in both gndL and sldA (double mutant) still showed activity with GA. Moreover, 2KGA production was still observed in gndL and double mutant strains. 5KGA production was not observed at all in sldA and double mutant strains. Thus, it seems that “G. dioxyacetonicus” IFO 3271 has another membrane-bound enzyme that reacts with GA, producing 2KGA.
机译:大多数葡糖杆菌物种通过培养基中的GA通过d-葡萄糖同时产生并积累2-ke-d-葡萄糖酸酯(2KGA)和5KGA。 2KGA由含有膜结合黄素腺嘌呤二核苷酸的GA 2-脱氢酶(FAD-GADH)产生。 FAD-GADH纯化自“氧化葡糖杆菌” IFO 3271,并分析了这三个亚基的N端序列。从N端序列设计PCR引物,并将部分FAD-GADH基因克隆为PCR产物。使用该PCR产物,获得了包含完整的FAD-GADH基因的基因片段,最后确定了9,696 bp的核苷酸序列。克隆的序列具有三个开放阅读框(ORF),gndS,gndL和gndC,分别对应于FAD-GADH的小,大和细胞色素c亚基。还发现了其他七个ORF,其中一个显示出与葡萄糖酸δ-内酰胺酶的身份,后者可能直接参与2KGA的生产。构建了三个在gndL或sldA(负责5KGA产生的基因)或两者中都存在缺陷的突变菌株。在gndL缺陷菌株的膜级分中,GA的铁氰化物还原酶活性降低了野生型菌株的60%,而在sldA缺陷菌株中,GA的活性未降低,而甘油,d的活性降低了。 -阿拉伯糖醇和d-山梨糖醇消失。出乎意料的是,在gndL和sldA(双重突变体)中都存在缺陷的菌株仍然对GA具有活性。此外,仍在gndL和双重突变菌株中观察到2KGA的产生。在sldA和双重突变菌株中根本未观察到5KGA的产生。因此,似乎“ G. IFO 3271具有与GA反应的膜结合酶,可产生2KGA。

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