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Transcriptional control of lipid metabolism by the MarR-like regulator FamR and the global regulator GlxR in the lipophilic axilla isolate Corynebacterium jeikeium K411

机译:脂溶性腋窝分离株耶氏杆菌K411中的MarR样调节剂FamR和全局调节剂GlxR对脂质代谢的转录控制。

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摘要

Corynebacterial fatty acid metabolism has been associated with human body odour, and is therefore discussed as a potential target for the development of new deodorant additives. For this reason, the transcription levels of fad genes associated with lipid metabolism in the axilla isolate Corynebacterium jeikeium were analysed during growth on different lipid sources. The transcription of several fad genes was induced two-to ninefold in the presence of Tween 60, including the acyl-CoA dehydrogenase gene fadE6. DNA affinity chromatography identified the MarR-like protein FamR as candidate regulator of fadE6. DNA band shift assays and in vivo reporter gene fusions confirmed the direct interaction of FamR with the mapped fadE6 promoter region. Moreover, DNA affinity chromatography and DNA band shift assays detected the binding of GlxR to the promoter regions of fadE6 and famR, revealing a hierarchical control of fadE6 transcription by a feed-forward loop. Binding of GlxR and FamR to additional fad gene regions was demonstrated in vitro by DNA band shift assays, resulting in the co-regulation of fadA, fadD, fadE and fadH genes. These results shed first light on the hierarchical transcriptional control of lipid metabolism in C. jeikeium, a pathway associated with the development of human axillary odour.>Funding Information H. B. acknowledges the scholarship granted by the CLIB-Graduate Cluster Industrial Biotechnology co-financed by the Ministry of Innovation, Science, and Research of North Rhine Westphalia. The authors thank Benjamin Müller (CeBiTec) for expert help with the MALDI-TOF/TOF mass spectrometer and Christian Ziert (Bielefeld University) for valuable advice concerning the gfp reporter fusion.
机译:棒状杆菌脂肪酸代谢与人体气味有关,因此被讨论为开发新型除臭添加剂的潜在目标。因此,在不同脂质来源上生长期间,分析了腋窝分离株短杆菌棒状杆菌中与脂质代谢相关的fad基因的转录水平。在Tween 60存在下,几个fad基因的转录被诱导了2到9倍,其中包括酰基辅酶A脱氢酶基因fadE6。 DNA亲和色谱确定了MarR样蛋白FamR为fadE6的候选调控因子。 DNA频移测定和体内报道基因融合证实了FamR与定位的fadE6启动子区域的直接相互作用。此外,DNA亲和层析和DNA带移分析检测到GlxR与fadE6和famR启动子区域的结合,揭示了前馈环对fadE6转录的分层控制。通过DNA带移分析在体外证明了GlxR和FamR与其他fad基因区域的结合,从而共同调节了fadA,fadD,fadE和fadH基因。这些结果首次揭示了 C中脂质代谢的分级转录控制。 jeikeium ,一种与人类腋臭发展有关的途径。>资金信息:HB承认由创新部,科学部共同资助的CLIB研究生集群工业生物技术所提供的奖学金,和北莱茵威斯特法伦州的研究。作者感谢BenjaminMüller(CeBiTec)为MALDI-TOF / TOF质谱仪提供的专家帮助,以及Christian Ziert(比勒费尔德大学)为 gfp 报道融合提供的宝贵建议。

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