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Roles of rapH and rapG in Positive Regulation of Rapamycin Biosynthesis in Streptomyces hygroscopicus

机译:rapH和rapG在吸水链霉菌雷帕霉素生物合成正调控中的作用

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摘要

Rapamycin is an important macrocyclic polyketide produced by Streptomyces hygroscopicus and showing immunosuppressive, antifungal, and antitumor activities as well as displaying anti-inflammatory and neuroregenerative properties. The immense pharmacological potential of rapamycin has led to the production of an array of analogues, including through genetic engineering of the rapamycin biosynthetic gene cluster. This cluster contains several putative regulatory genes. Based on DNA sequence analysis, the products of genes rapH and rapG showed high similarities with two different families of transcriptional activators, LAL and AraC, respectively. Overexpression of either gene resulted in a substantial increase in rapamycin biosynthesis, confirming their positive regulatory role, while deletion of both from the chromosome of S. hygroscopicus resulted in a complete loss of antibiotic production. Complementation studies indicated an essential role of the RapG regulator for rapamycin biosynthesis and a supportive role of RapH. A direct effect of rapH and rapG gene products on the promoter of the rapamycin polyketide synthase operon, rapA-rapB, was observed using the chalcone synthase gene rppA as a reporter system.
机译:雷帕霉素是由吸水链霉菌产生的一种重要的大环聚酮,具有免疫抑制,抗真菌和抗肿瘤活性,并具有抗炎和神经再生特性。雷帕霉素的巨大药理潜力导致了一系列类似物的产生,包括通过雷帕霉素生物合成基因簇的基因工程。该簇包含几个推定的调节基因。根据DNA序列分析,基因rapH和rapG的产物分别与两个不同的转录激活子家族LAL和AraC具有高度相似性。任一基因的过表达导致雷帕霉素生物合成的大量增加,证实了它们的积极调节作用,而从吸水链霉菌的染色体中缺失两者导致抗生素产生的完全丧失。补充研究表明,RapG调节剂在雷帕霉素生物合成中起着至关重要的作用,并且对RapH具有辅助作用。使用查尔酮合酶基因rppA作为报告系统,观察到了rapH和rapG基因产物对雷帕霉素聚酮合酶操纵子rapA-rapB的直接作用。

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