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首页> 外文期刊>Journal of bacteriology >Riboflavin synthesis genes are linked with the lux operon of Photobacterium phosphoreum.
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Riboflavin synthesis genes are linked with the lux operon of Photobacterium phosphoreum.

机译:核黄素合成基因与发光细菌的荧光操纵子相连。

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Four genes immediately downstream of luxG in the Photobacterium phosphoreum lux operon (ribEBHA) have been sequenced and shown to be involved in riboflavin synthesis. Sequence analyses and complementation of Escherichia coli riboflavin auxotrophs showed that the gene products of ribB and ribA are 3,4-dihydroxy-2-butanone 4-phosphate (DHBP) synthetase and GTP cyclohydrolase II, respectively. By expression of P. phosphoreum ribE in E. coli using the bacteriophage T7 promoter-RNA polymerase system, ribE was shown to code for riboflavin synthetase, which catalyzes the conversion of lumazine to riboflavin. Increased thermal stability of RibE on expression with RibH indicated that ribH coded for lumazine synthetase. The organization of the rib genes in P. phosphoreum is quite distinct, with ribB and ribA being linked but separated by ribH, whereas in E. coli, they are unlinked and in Bacillus subtilis, RibB and RibA functions are coded by a single gene.
机译:已测定了在发光细菌的lux操纵子(ribEBHA)中luxG下游的四个基因,并显示它们参与了核黄素的合成。大肠杆菌核黄素营养缺陷型的序列分析和互补分析表明,ribB和ribA的基因产物分别为3,4-二羟基-2-丁酮4-磷酸(DHBP)合成酶和GTP环水解酶II。通过使用噬菌体T7启动子-RNA聚合酶系统在大肠杆菌中表达磷毕赤酵母ribE,证明ribE编码核黄素合成酶,该酶催化lumazine转化为核黄素。 RibE在用RibH表达时提高了热稳定性,表明ribH编码了lumazine合成酶。磷青霉中的rib基因的组织非常不同,ribB和ribA是连接的,但被ribH隔开,而在大肠杆菌中,它们是未连接的,在枯草芽孢杆菌中,RibB和RibA的功能由单个基因编码。

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