Citation: | ZHANG Ya, ZHOU Changlin. Application of metabolic regulation in the antibiotic biosynthesis of actinomycetes[J]. Journal of China Pharmaceutical University, 2015, 46(4): 393-399. DOI: 10.11665/j.issn.1000-5048.20150402 |
[1] |
Bérdy J. Thoughts and facts about antibiotics:where we are now and where we are heading[J].J Antibiot,2012, 65(8):385-395.
|
[2] |
Olano C,Lombó F,Méndez C,et al.Improving production of bioactive secondary metabolites in actinomycetes by metabolic engineering[J].Metab Eng,2008, 10(5):281-292.
|
[3] |
Rey DA,Nentwich SS,Koch DJ,et al.The McbR repressor modulated by the effector substance S-adenosylhomocysteine controls directly the transcription of a regulon involved in sulphur metabolism of Corynebacterium glutamicum ATCC 13032[J].Mol Microbiol,2005, 56(4):871-887.
|
[4] |
Orth P,Schnappinger D,Hillen W,et al.Structural basis of gene regulation by the tetracycline inducible Tet repressor-operator system[J].Nat Struct Biol,2000, 7(3):215-219.
|
[5] |
Zhu Q,Li J,Ma J,et al.Discovery and engineered overproduction of antimicrobial nucleoside antibiotic A201A from the deep-sea marine actinomycete Marinactinospora thermotolerans SCSIO 00652[J].Antimicrob Agents Chemother,2012, 56(1):110-114.
|
[6] |
Zhang Y,Zou Z,Niu G,et al.JadR and jadR2 act synergistically to repress jadomycin biosynthesis[J].Sci China Life Sci,2013, 56(7):584-590.
|
[7] |
Dun J, Zhao Y, Zheng G, et al. PapR6, a putative atypical response regulator,functions as a pathway-specific activator of pristinamycin II biosynthesis in Streptomyces pristinaespiralis[J].J Bacteriol,2015, 197(3):441-450.
|
[8] |
Alvarez-álvarez R,Rodríguez-García A,Santamarta I,et al.Transcriptomic analysis of Streptomyces clavuligerus ΔccaR::tsr:effects of the cephamycin C-clavulanic acid cluster regulator CcaR on global regulation[J].Microb Biotechnol,2014, 7(3):221-231.
|
[9] |
Flórez AB,Alvarez S,Zabala D,et al.Transcriptional regulation of mithramycin biosynthesis in Streptomyces argillaceus:dual role as activator and repressor of the PadR-like regulator MtrY[J].Microbiology,2014, 161(Pt 2):272-284.
|
[10] |
Kurniawan YN,Kitani S,Maeda A,et al.Differential contributions of two SARP family regulatory genes to indigoidine biosynthesis in Streptomyces lavendulae FRI-5[J].Appl Microbiol Biotechnol,2014, 98(23):9713-9721.
|
[11] |
Novakova R,Rehakova A,Kutas P,et al.The role of two SARP family transcriptional regulators in regulation of the auricin gene cluster in Streptomyces aureofaciens CCM 3239[J].Microbiology,2011, 157(Pt 6):1629-1639.
|
[12] |
Rehakova A,Novakova R,Feckova L,et al.A gene determining a new member of the SARP family contributes to transcription of genes for the synthesis of the angucycline polyketide auricin in Streptomyces aureofaciens CCM 3239[J].FEMS Microbiol Lett,2013, 346(1):45-55.
|
[13] |
Xie Y,Wang B,Liu J,et al.Identification of the biosynthetic gene cluster and regulatory cascade for the synergistic antibacterial antibiotics griseoviridin and viridogrisein in Streptomyces griseoviridis[J].Chembiochem,2012, 13(18):2745-2757.
|
[14] |
Nah JH,Park SH,Yoon HM,et al.Identification and characterization of wblA-dependent tmcT regulation during tautomycetin biosynthesis in Streptomyces sp.CK4412[J].Biotechnol Adv,2012, 30(1):202-209.
|
[15] |
Gao C,Hindra,Mulder D,et al.Crp is a global regulator of antibiotic production in streptomyces[J].MBio,2012, 3(6).pii:e00407-12.doi: 10.1128/mBio.00407-12.
|
[16] |
MeKenzie NL,Thaker M,Koteva K,et al.Induction of antimicrobial activities in heterologous streptomycetes using alleles of the Streptomyces coelicolor gene absA1[J].J Antibiot,2010, 63(4):177-182.
|
[17] |
Yepes A,Rico S,Rodríguez-García A,et al.Novel two-component systems implied in antibiotic production in Streptomyces coelicolor[J].PLoS One,2011, 6(5):1371-1381.
|
[18] |
Makitrynskyy R,Rebets Y,Ostash B,et al.Genetic factors that influence moenomycin production in Streptomyces[J].J Ind Microbiol Biotechnol,2010, 37(6):559-566.
|
[19] |
Jiang LB,Liu YP,Wang P,et al.Inactivation of the extracytoplasmic function sigma factor Sig6 stimulates avermectin production in Streptomyces avermitilis[J].Biotechnol Lett,2011, 33(10):1955-1961.
|
[20] |
Kang SH,Huang J,Lee HN,et al.Interspecies DNA microarray analysis identifies WblA as a pleiotropic down-regulator of antibiotic biosynthesis in Streptomyces[J].J Bacteriol,2007, 189(11):4315-4319.
|
[21] |
Fowler-Goldsworthy K,Gust B,Mouz S,et al.The actinobacteria-specific gene wblA controls major developmental transitions in Streptomyces coelicolor A3(2)[J].Microbiology,2011, 157(Pt 5):1312-1328.
|
[22] |
Rabyk M, Ostash B, Rebets Y, et al. Streptomyces ghanaensis pleiotropic regulatory gene wblAgh influences morphogenesis and moenomycin production[J].Biotechnol Lett,2011, 33(12):2481-2486.
|
[23] |
Noh JH,Kim SH,Lee HN,et al.Isolation and genetic manipulation of the antibiotic down-regulatory gene,wblA ortholog for doxorubicin-producing Streptomyces strain improvement[J].Appl Microbiol Biotechnol,2010, 86(4):1145-1153.
|
[24] |
'Switek MA,Gubbens J,Bucca G,et al.The ROK family regulator Rok7B7 pleiotropically affects xylose utilization,carbon catabolite repression,and antibiotic production in Streptomyces coelicolor[J].J Bacteriol,2013, 195(6):1236-1248.
|
[25] |
Wang T,Bai L,Zhu D,et al.Enhancing macrolide production in Streptomyces by coexpressing three heterologous genes[J].Enzyme Microb Technol,2012, 50(1):5-9.
|
[26] |
Pan Y,Wang L,He X,et al.SabR enhances nikkomycin production via regulating the transcriptional level of sanG,a pathway-specific regulatory gene in Streptomyces ansochromogenes[J].BMC Microbiol,2011, 11:164.
|
[27] |
Zhou TC,Kim BG,Zhong JJ. Enhanced production of validamycin A in Streptomyces hygroscopicus 5008 by engineering validamycin biosynthetic gene cluster[J].Appl Microbiol Biotechnol,2014, 98(18):7911-7922.
|
[28] |
Liao G,Li J,Li L,et al.Cloning,reassembling and integration of the entire nikkomycin biosynthetic gene cluster into Streptomyces ansochromogenes lead to an improved nikkomycin production[J].Microb Cell Fact,2010, 9:6.
|
[29] |
Liao G,Wang L,Liu Q,et al.Manipulation of kynurenine pathway for enhanced daptomycin production in Streptomyces roseosporus[J].Biotechnol Prog,2013, 29(4):847-852.
|
[30] |
Bachmann BO,Van Lanen SG,Baltz RH.Microbial genome mining for accelerated natural products discovery:is a renaissance in the making[J]?J Ind Microbiol Biotechnol,2014, 41(2):175-184.
|
[31] |
Luo Y,Huang H,Liang J,et al.Activation and characterization of a cryptic polycyclic tetramate macrolactam biosynthetic gene cluster[J].Nat Commun,2013, 4:2894.
|
[32] |
Komatsu M,Komatsu K,Koiwai H,et al.Engineered Streptomyces avermitilis host for heterologous expression of biosynthetic gene cluster for secondary metabolites[J].ACS Synth Biol,2013, 2(7):384-396.
|
[33] |
Jin Z,Jin X,Jin Q,et al.Conjugal transferring of resistance gene PTR for improvement of pristinamycin-producing Streptomyces pristinaespiralis[J].Appl Biochem Biotechnol,2010, 160(6):1853-1864.
|
[34] |
Qiu J,Zhuo Y,Zhu D,et al.Overexpression of the ABC transporter AvtAB increases avermectin production in Streptomyces avermitilis[J].Appl Microbiol Biotechnol,2011, 92(2):337-345.
|
[35] |
Yu L,Yan X,Wang L,et al.Molecular cloning and functional characterization of an ATP-binding cassette transporter OtrC from Streptomyces rimosus[J].BMC Biotechnol,2012, 12:52.
|
[36] |
Zabala D, Braña AF, AB Flórez, et al. Engineering precursor metabolite pools for increasing production of antitumor mithramycins in Streptomyces argillaceus[J].Metab Eng,2013,20:187-197.
|
[37] |
Qin Z,Wang X,Rateb ME,et al.Disruption of a methyltransferase gene in actinomycin G gene cluster in Streptomyces iakyrus increases the production of phenazinomycin[J].FEMS Microbiol Lett,2014, 352(1):62-68.
|
[38] |
Ren J,Cui Y,Zhang F,et al.Enhancement of nystatin production by redirecting precursor fluxes after disruption of the tetramycin gene from Streptomyces ahygroscopicus[J].Microbiol Res,2014, 169(7/8):602-608.
|
[39] |
Ma Z,Tao L,Bechthold A,et al.Overexpression of ribosome recycling factor is responsible for improvement of nucleotide antibiotic-toyocamycin in Streptomyces diastatochromogenes 1628[J].Appl Microbiol Biotechnol,2014, 98(11):5051-5058.
|
[40] |
Pan Y, Lu C, Dong H, et al. Disruption of rimP-SC, encoding a ribosome assembly cofactor,markedly enhances the production of several antibiotics in Streptomyces coelicolor[J].Microb Cell Fact,2013, 12:65.
|