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New insights into chloramphenicol biosynthesis in Streptomyces venezuelae ATCC 10712

机译:委内链霉菌ATCC 10712中氯霉素生物合成的新见解

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摘要

Comparative genome analysis revealed seven uncharacterized genes, sven0909 to sven0915, adjacent to the previously identified chloramphenicol biosynthetic gene cluster (sven0916-sven0928) of Streptomyces venezuelae strain ATCC 10712 that was absent in a closely related Streptomyces strain that does not produce chloramphenicol. Transcriptional analysis suggested that three of these genes might be involved in chloramphenicol production, a prediction confirmed by the construction of deletion mutants. These three genes encode a cluster-associated transcriptional activator (Sven0913), a phosphopantetheinyl transferase (Sven0914), and a Na+/H+ antiporter (Sven0915). Bioinformatic analysis also revealed the presence of a previously undetected gene, sven0925, embedded within the chloramphenicol biosynthetic gene cluster that appears to encode an acyl carrier protein, bringing the number of new genes likely to be involved in chloramphenicol production to four. Microarray experiments and synteny comparisons also suggest that sven0929 is part of the biosynthetic gene cluster. This has allowed us to propose an updated and revised version of the chloramphenicol biosynthetic pathway.
机译:比较基因组分析显示七个未表征的基因,从sven0909到sven0915,与先前鉴定的委内链霉菌ATCC 10712的氯霉素生物合成基因簇(sven0916-sven0928)相邻,而紧密相关的不产生氯霉素的链霉菌菌株中没有该基因。转录分析表明,这些基因中的三个可能与氯霉素的产生有关,这一预测已被缺失突变体的构建所证实。这三个基因编码一个与簇相关的转录激活因子(Sven0913),一个磷酸泛肽基转移酶(Sven0914)和一个Na + / H +反转运蛋白(Sven0915)。生物信息学分析还显示,氯霉素生物合成基因簇中嵌入了一个以前未被发现的基因sven0925,该基因簇似乎编码一个酰基载体蛋白,从而使可能与氯霉素生产有关的新基因数量增加到四个。微阵列实验和同义词比较也表明sven0929是生物合成基因簇的一部分。这使我们能够提出氯霉素生物合成途径的更新和修订版本。

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