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首页> 外文期刊>BMC Molecular Biology >The DeoR-type transcriptional regulator SugR acts as a repressor for genes encoding the phosphoenolpyruvate:sugar phosphotransferase system (PTS) in Corynebacterium glutamicum
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The DeoR-type transcriptional regulator SugR acts as a repressor for genes encoding the phosphoenolpyruvate:sugar phosphotransferase system (PTS) in Corynebacterium glutamicum

机译:DeoR型转录调节因子SugR充当谷氨酸棒杆菌中编码磷酸烯醇丙酮酸:糖磷酸转移酶系统(PTS)的基因的阻遏物

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Background The major uptake system responsible for the transport of fructose, glucose, and sucrose in Corynebacterium glutamicum ATCC 13032 is the phosphoenolpyruvate:sugar phosphotransferase system (PTS). The genes encoding PTS components, namely ptsI, ptsH, and ptsF belong to the fructose-PTS gene cluster, whereas ptsG and ptsS are located in two separate regions of the C. glutamicum genome. Due to the localization within and adjacent to the fructose-PTS gene cluster, two genes coding for DeoR-type transcriptional regulators, cg2118 and sugR, are putative candidates involved in the transcriptional regulation of the fructose-PTS cluster genes. Results Four transcripts of the extended fructose-PTS gene cluster that comprise the genes sugR-cg2116, ptsI, cg2118-fruK-ptsF, and ptsH, respectively, were characterized. In addition, it was shown that transcription of the fructose-PTS gene cluster is enhanced during growth on glucose or fructose when compared to acetate. Subsequently, the two genes sugR and cg2118 encoding for DeoR-type regulators were mutated and PTS gene transcription was found to be strongly enhanced in the presence of acetate only in the sugR deletion mutant. The SugR regulon was further characterized by microarray hybridizations using the sugR mutant and its parental strain, revealing that also the PTS genes ptsG and ptsS belong to this regulon. Binding of purified SugR repressor protein to a 21 bp sequence identified the SugR binding site as an AC-rich motif. The two experimentally identified SugR binding sites in the fructose-PTS gene cluster are located within or downstream of the mapped promoters, typical for transcriptional repressors. Effector studies using electrophoretic mobility shift assays (EMSA) revealed the fructose PTS-specific metabolite fructose-1-phosphate (F-1-P) as a highly efficient, negative effector of the SugR repressor, acting in the micromolar range. Beside F-1-P, other sugar-phosphates like fructose-1,6-bisphosphate (F-1,6-P) and glucose-6-phosphate (G-6-P) also negatively affect SugR-binding, but in millimolar concentrations. Conclusion In C. glutamicum ATCC 13032 the DeoR-type regulator SugR acts as a pleiotropic transcriptional repressor of all described PTS genes. Thus, in contrast to most DeoR-type repressors described, SugR is able to act also on the transcription of the distantly located genes ptsG and ptsS of C. glutamicum. Transcriptional repression of the fructose-PTS gene cluster is observed during growth on acetate and transcription is derepressed in the presence of the PTS sugars glucose and fructose. This derepression of the fructose-PTS gene cluster is mainly modulated by the negative effector F-1-P, but reduced sensitivity to the other effectors, F-1,6-P or G-6-P might cause differential transcriptional regulation of genes of the general part of the PTS (ptsI, ptsH) and associated genes encoding sugar-specific functions (ptsF, ptsG, ptsS).
机译:背景技术谷氨酸棒杆菌ATCC 13032中负责果糖,葡萄糖和蔗糖运输的主要摄取系统是磷酸烯醇丙酮酸:糖磷酸转移酶系统(PTS)。编码PTS成分的基因ptsI,ptsH和ptsF属于果糖-PTS基因簇,而ptsG和ptsS位于谷氨酸棒杆菌基因组的两个单独区域中。由于果糖-PTS基因簇的内部和附近,编码DeoR型转录调节子的两个基因cg2118和sugR是果糖-PTS簇基因转录调控的推测候选者。结果表征了扩展的果糖-PTS基因簇的四个转录本,分别包含基因sugR-cg2116,ptsI,cg2118-fruK-ptsF和ptsH。另外,与乙酸盐相比,显示了在葡萄糖或果糖上生长期间果糖-PTS基因簇的转录增强。随后,突变了编码DeoR型调节子的两个基因sugR和cg2118,发现只有在sugR缺失突变体中存在乙酸盐时,PTS基因的转录才大大增强。通过使用sugR突变体及其亲本菌株的微阵列杂交进一步表征了SugR调节子,揭示了PTS基因ptsG和ptsS也属于该调节子。纯化的SugR阻遏蛋白与21 bp序列的结合将SugR结合位点鉴定为富含AC的基序。果糖-PTS基因簇中两个通过实验鉴定的SugR结合位点位于作图的启动子内部或下游,通常是转录阻遏物。使用电泳迁移率变动分析(EMSA)的效应子研究表明,果糖PTS特异性代谢物果糖-1-磷酸(F-1-P)是SugR阻遏物的高效负效应子,在微摩尔范围内起作用。除F-1-P外,其他糖磷酸酯如果糖1,6-双磷酸酯(F-1,6-P)和葡萄糖6-磷酸酯(G-6-P)也对SugR结合产生负面影响,但在毫摩尔浓度。结论在谷氨酸棒杆菌ATCC 13032中,DeoR型调节子SugR充当所有描述的PTS基因的多效转录阻遏物。因此,与所描述的大多数DeoR型阻遏物相反,SugR还能对谷氨酸棒状杆菌遥远基因ptsG和ptsS的转录起作用。在乙酸盐上生长期间观察到果糖-PTS基因簇的转录抑制,并且在PTS糖,葡萄糖和果糖的存在下,转录被抑制。果糖-PTS基因簇的这种抑制主要由负效应子F-1-P调节,但对其他效应子F-1,6-P或G-6-P的敏感性降低可能会导致基因的差异转录调控。 PTS的一般部分(ptsI,ptsH)和编码糖特异性功能的相关基因(ptsF,ptsG,ptsS)的基因。

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