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首页> 外文期刊>Applied and Environmental Microbiology >A Novel CO-Responsive Transcriptional Regulator and Enhanced H2 Production by an Engineered Thermococcus onnurineus NA1 Strain
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A Novel CO-Responsive Transcriptional Regulator and Enhanced H2 Production by an Engineered Thermococcus onnurineus NA1 Strain

机译:新型的CO响应转录调节剂和工程化的热球菌NA1菌株提高了H2的产生

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Genome analysis revealed the existence of a putative transcriptional regulatory system governing CO metabolism in Thermococcus onnurineus NA1, a carboxydotrophic hydrogenogenic archaeon. The regulatory system is composed of CorQ with a 4-vinyl reductase domain and CorR with a DNA-binding domain of the LysR-type transcriptional regulator family in close proximity to the CO dehydrogenase (CODH) gene cluster. Homologous genes of the CorQR pair were also found in the genomes of Thermococcus species and “Candidatus Korarchaeum cryptofilum” OPF8. In-frame deletion of either corQ or corR caused a severe impairment in CO-dependent growth and H2 production. When corQ and corR deletion mutants were complemented by introducing the corQR genes under the control of a strong promoter, the mRNA and protein levels of the CODH gene were significantly increased in a ΔCorR strain complemented with integrated corQR (ΔCorR/corQR↑) compared with those in the wild-type strain. In addition, the ΔCorR/corQR↑ strain exhibited a much higher H2 production rate (5.8-fold) than the wild-type strain in a bioreactor culture. The H2 production rate (191.9 mmol liter?1 h?1) and the specific H2 production rate (249.6 mmol g?1 h?1) of this strain were extremely high compared with those of CO-dependent H2-producing prokaryotes reported so far. These results suggest that the corQR genes encode a positive regulatory protein pair for the expression of a CODH gene cluster. The study also illustrates that manipulation of the transcriptional regulatory system can improve biological H2 production.
机译:基因组分析表明,存在一个假定的转录调节系统,该系统调控羧化营养的产氢古细菌onnurcinus NA1中的CO代谢。该调节系统由具有4-乙烯基还原酶结构域的CorQ和具有LysR型转录调节因子家族的DNA结合结构域的CorR组成,紧邻CO脱氢酶(CODH)基因簇。还在嗜热球菌物种和“隐球菌Candidatus Korarchaeum cryptofilum” OPF8的基因组中发现了CorQR对的同源基因。 corQ或corR的框内缺失导致CO依赖性生长和H2产生严重受损。当通过在强启动子的控制下引入corQR基因来补充corQ和corR缺失突变体时,与整合corQR(ΔCorR/ corQR↑)互补的ΔCorR菌株中,CODH基因的mRNA和蛋白质水平显着增加。在野生型菌株中。此外,在生物反应器培养中,ΔCorR/ corQR↑菌株的H2产生速率比野生型菌株高得多(5.8倍)。与迄今为止报道的CO依赖性H 2原核生物相比,该菌株的H 2产生速率(191.9 mmol升?1 h?1)和比H2产生速率(249.6 mmol g?1 h?1)极高。 。这些结果表明,corQR基因编码一个正调节蛋白对,用于表达CODH基因簇。该研究还表明,转录调控系统的操纵可以提高生物H2的产生。

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