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Roles of fkbN in Positive Regulation and tcs7 in Negative Regulation of FK506 Biosynthesis in Streptomyces sp. Strain KCTC 11604BP

机译:fkbN在链霉菌FK506生物合成的负调控中的作用和tcs7在负调控中的作用。应变KCTC 11604BP

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摘要

FK506 is an important 23-member polyketide macrolide with immunosuppressant activity. Its entire biosynthetic gene cluster was previously cloned from Streptomyces sp. strain KCTC 11604BP, and sequence analysis identified three putative regulatory genes, tcs2, tcs7, and fkbN, which encode proteins with high similarity to the AsnC family transcriptional regulators, LysR-type transcriptional regulators, and LAL family transcriptional regulators, respectively. Overexpression and in-frame deletion of tcs2 did not affect the production of FK506 or co-occurring FK520 compared to results for the wild-type strain, suggesting that tcs2 is not involved in their biosynthesis. fkbN overexpression improved the levels of FK506 and FK520 production by approximately 2.0-fold, and a deletion of fkbN caused the complete loss of FK506 and FK520 production. Although the overexpression of tcs7 decreased the levels of FK506 and FK520 production slightly, a deletion of tcs7 caused 1.9-fold and 1.5-fold increases in FK506 and FK520 production, respectively. Finally, fkbN overexpression in the tcs7 deletion strain resulted in a 4.0-fold (21 mg liter−1) increase in FK506 production compared to that by the wild-type strain. This suggests that fkbN encodes a positive regulatory protein essential for FK506/FK520 biosynthesis and that the gene product of tcs7 negatively regulates their biosynthesis, demonstrating the potential of exploiting this information for strain improvement. Semiquantitative reverse transcription-PCR (RT-PCR) analyses of the transcription levels of the FK506 biosynthetic genes in the wild-type and mutant strains proved that most of the FK506 biosynthetic genes are regulated by fkbN in a positive manner and negatively by tcs7.
机译:FK506是具有免疫抑制活性的重要的23元聚酮大环内酯。其完整的生物合成基因簇先前是从链霉菌属(Streptomyces sp。)克隆的。菌株KCTC 11604BP,序列分析确定了三个推定的调节基因tcs2,tcs7和fkbN,它们分别编码与AsnC家族转录调节子,LysR型转录调节子和LAL家族转录调节子高度相似的蛋白质。与野生型菌株的结果相比,tcs2的过表达和框内缺失不影响FK506或共生FK520的产生,这表明tcs2不参与其生物合成。 fkbN的过表达使FK506和FK520的生产水平提高了约2.0倍,而fkbN的缺失导致FK506和FK520的生产完全丧失。尽管tcs7的过表达稍微降低了FK506和FK520的生产水平,但tcs7的缺失分别导致FK506和FK520的生产增加了1.9倍和1.5倍。最后,与野生型菌株相比,tcs7缺失菌株中的fkbN过表达导致FK506产量增加了4.0倍(​​21 mg升 -1 )。这表明fkbN编码了FK506 / FK520生物合成必不可少的正调控蛋白,而tcs7的基因产物负调控其生物合成,表明了利用此信息进行菌株改良的潜力。半野生型和突变菌株中FK506生物合成基因的转录水平的半定量逆转录PCR(RT-PCR)分析证明,大多数FK506生物合成基因受到fkbN的正调控,而受tcs7负调控。

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