| Literature DB >> 23793130 |
Xiaojuan Yin1, Xinqiang Xu, Hang Wu, Li Yuan, Xunduan Huang, Buchang Zhang.
Abstract
Saccharopolyspora erythraea, a mycelium-forming actinomycete, produces a clinically important antibiotic erythromycin. Extensive investigations have provided insights into erythromycin biosynthesis in S. erythraea, but knowledge of its morphogenesis remains limited. By gene inactivation and complementation strategies, the TetR-family transcriptional regulator SACE_0012 was identified to be a negative regulator of mycelium formation of S. erythraea A226. Detected by quantitative real-time PCR, the relative transcription of SACE_7115, the amfC homolog for an aerial mycelium formation protein, was dramatically increased in SACE_0012 mutant, whereas erythromycin biosynthetic gene eryA, a pleiotropic regulatory gene bldD, and the genes SACE_2141, SACE_6464, SACE_6040, that are the homologs to the sporulation regulators WhiA, WhiB, WhiG, were not differentially expressed. SACE_0012 disruption could not restore its defect of aerial development in bldD mutant, and also did not further accelerate the mycelium formation in the mutant of SACE_7040 gene, that was previously identified to be a morphogenesis repressor. Furthermore, the transcriptional level of SACE_0012 had not markedly changed in bldD and SACE_7040 mutant over A226. Taken together, these results suggest that SACE_0012 is a negative regulator of S. erythraea morphogenesis by mainly increasing the transcription of amfC gene, independently of the BldD regulatory system.Entities:
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Year: 2013 PMID: 23793130 PMCID: PMC3825060 DOI: 10.1007/s00284-013-0410-x
Source DB: PubMed Journal: Curr Microbiol ISSN: 0343-8651 Impact factor: 2.188
Fig. 1Inactivation of the TetR-family regulatory gene SACE_0012. a Schematic deletion of SACE_0012 in S. erythraea A226. b Confirmation of SACE_0012 deletion mutant by PCR analysis with the primer pair P1/P4. The size of 3.69 kb for the PCR-amplified bands was observed in wild-type A226, while a band of the size 4.36 kb was observed in mutant ΔSACE_0012, suggesting that the SACE_0012 gene was completely deleted
Fig. 3Confirmation and phenotype of the ΔbldD/ΔSACE_0012 double mutant. a Confirmation of ΔbldD/ΔSACE_0012 mutant by PCR analysis with the primer pair P1/P4. b Phenotype of the ΔbldD/ΔSACE_0012 mutant
Fig. 2Transcriptional analysis of the genes for morphogenesis and erythromycin biosynthesis in the SACE_0012 mutant. Mean values of three independent experiments are shown, with the standard deviation indicated by error bars. Statistical significance (*P < 0.05) compared to culture of wild-type strain A226
Fig. 5Relative transcriptional levels of SACE_0012 in the deletion mutants of bldD and SACE_7040 over A226. Mean values of three independent experiments are shown, with the standard deviation indicated by error bars
Fig. 4Confirmation and phenotype of the ΔSACE_7040/ΔSACE_0012 double mutant. a Confirmation of ΔSACE_7040/ΔSACE_0012 mutant by PCR analysis with the primer pair P1/P4. b Phenotype of the ΔSACE_7040/ΔSACE_0012 mutant