Cargando…

Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea

Erythromycin A is a widely used antibiotic produced by Saccharopolyspora erythraea; however, its biosynthetic cluster lacks a regulatory gene, limiting the yield enhancement via regulation engineering of S. erythraea. Herein, six TetR family transcriptional regulators (TFRs) belonging to three genom...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Hang, Wang, Yansheng, Yuan, Li, Mao, Yongrong, Wang, Weiwei, Zhu, Lin, Wu, Panpan, Fu, Chengzhang, Müller, Rolf, Weaver, David T., Zhang, Lixin, Zhang, Buchang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5640589/
https://www.ncbi.nlm.nih.gov/pubmed/29062926
http://dx.doi.org/10.1016/j.synbio.2016.01.004
_version_ 1783271054851964928
author Wu, Hang
Wang, Yansheng
Yuan, Li
Mao, Yongrong
Wang, Weiwei
Zhu, Lin
Wu, Panpan
Fu, Chengzhang
Müller, Rolf
Weaver, David T.
Zhang, Lixin
Zhang, Buchang
author_facet Wu, Hang
Wang, Yansheng
Yuan, Li
Mao, Yongrong
Wang, Weiwei
Zhu, Lin
Wu, Panpan
Fu, Chengzhang
Müller, Rolf
Weaver, David T.
Zhang, Lixin
Zhang, Buchang
author_sort Wu, Hang
collection PubMed
description Erythromycin A is a widely used antibiotic produced by Saccharopolyspora erythraea; however, its biosynthetic cluster lacks a regulatory gene, limiting the yield enhancement via regulation engineering of S. erythraea. Herein, six TetR family transcriptional regulators (TFRs) belonging to three genomic context types were individually inactivated in S. erythraea A226, and one of them, SACE_3446, was proved to play a negative role in regulating erythromycin biosynthesis. EMSA and qRT-PCR analysis revealed that SACE_3446 covering intact N-terminal DNA binding domain specifically bound to the promoter regions of erythromycin biosynthetic gene eryAI, the resistant gene ermE and the adjacent gene SACE_3447 (encoding a long-chain fatty-acid CoA ligase), and repressed their transcription. Furthermore, we explored the interaction relationships of SACE_3446 and previously identified TFRs (SACE_3986 and SACE_7301) associated with erythromycin production. Given demonstrated relatively independent regulation mode of SACE_3446 and SACE_3986 in erythromycin biosynthesis, we individually and concomitantly inactivated them in an industrial S. erythraea WB. Compared with WB, the WBΔ3446 and WBΔ3446Δ3986 mutants respectively displayed 36% and 65% yield enhancement of erythromycin A, following significantly elevated transcription of eryAI and ermE. When cultured in a 5 L fermentor, erythromycin A of WBΔ3446 and WBΔ3446Δ3986 successively reached 4095 mg/L and 4670 mg/L with 23% and 41% production improvement relative to WB. The strategy reported here will be useful to improve antibiotics production in other industrial actinomycete.
format Online
Article
Text
id pubmed-5640589
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-56405892017-10-23 Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea Wu, Hang Wang, Yansheng Yuan, Li Mao, Yongrong Wang, Weiwei Zhu, Lin Wu, Panpan Fu, Chengzhang Müller, Rolf Weaver, David T. Zhang, Lixin Zhang, Buchang Synth Syst Biotechnol Article Erythromycin A is a widely used antibiotic produced by Saccharopolyspora erythraea; however, its biosynthetic cluster lacks a regulatory gene, limiting the yield enhancement via regulation engineering of S. erythraea. Herein, six TetR family transcriptional regulators (TFRs) belonging to three genomic context types were individually inactivated in S. erythraea A226, and one of them, SACE_3446, was proved to play a negative role in regulating erythromycin biosynthesis. EMSA and qRT-PCR analysis revealed that SACE_3446 covering intact N-terminal DNA binding domain specifically bound to the promoter regions of erythromycin biosynthetic gene eryAI, the resistant gene ermE and the adjacent gene SACE_3447 (encoding a long-chain fatty-acid CoA ligase), and repressed their transcription. Furthermore, we explored the interaction relationships of SACE_3446 and previously identified TFRs (SACE_3986 and SACE_7301) associated with erythromycin production. Given demonstrated relatively independent regulation mode of SACE_3446 and SACE_3986 in erythromycin biosynthesis, we individually and concomitantly inactivated them in an industrial S. erythraea WB. Compared with WB, the WBΔ3446 and WBΔ3446Δ3986 mutants respectively displayed 36% and 65% yield enhancement of erythromycin A, following significantly elevated transcription of eryAI and ermE. When cultured in a 5 L fermentor, erythromycin A of WBΔ3446 and WBΔ3446Δ3986 successively reached 4095 mg/L and 4670 mg/L with 23% and 41% production improvement relative to WB. The strategy reported here will be useful to improve antibiotics production in other industrial actinomycete. KeAi Publishing 2016-02-16 /pmc/articles/PMC5640589/ /pubmed/29062926 http://dx.doi.org/10.1016/j.synbio.2016.01.004 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Wu, Hang
Wang, Yansheng
Yuan, Li
Mao, Yongrong
Wang, Weiwei
Zhu, Lin
Wu, Panpan
Fu, Chengzhang
Müller, Rolf
Weaver, David T.
Zhang, Lixin
Zhang, Buchang
Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea
title Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea
title_full Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea
title_fullStr Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea
title_full_unstemmed Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea
title_short Inactivation of SACE_3446, a TetR family transcriptional regulator, stimulates erythromycin production in Saccharopolyspora erythraea
title_sort inactivation of sace_3446, a tetr family transcriptional regulator, stimulates erythromycin production in saccharopolyspora erythraea
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5640589/
https://www.ncbi.nlm.nih.gov/pubmed/29062926
http://dx.doi.org/10.1016/j.synbio.2016.01.004
work_keys_str_mv AT wuhang inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT wangyansheng inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT yuanli inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT maoyongrong inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT wangweiwei inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT zhulin inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT wupanpan inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT fuchengzhang inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT mullerrolf inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT weaverdavidt inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT zhanglixin inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea
AT zhangbuchang inactivationofsace3446atetrfamilytranscriptionalregulatorstimulateserythromycinproductioninsaccharopolysporaerythraea