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PUBMED FOR HANDHELDS

Journal Abstract Search


227 related items for PubMed ID: 15612702

  • 1. Characterization of tylM3/tylM2 and mydC/mycB pairs required for efficient glycosyltransfer in macrolide antibiotic biosynthesis.
    Melançon CE, Takahashi H, Liu HW.
    J Am Chem Soc; 2004 Dec 29; 126(51):16726-7. PubMed ID: 15612702
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  • 2. Functional analysis of desVIII homologues involved in glycosylation of macrolide antibiotics by interspecies complementation.
    Hong JS, Park SJ, Parajuli N, Park SR, Koh HS, Jung WS, Choi CY, Yoon YJ.
    Gene; 2007 Jan 15; 386(1-2):123-30. PubMed ID: 17049185
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  • 3. Characterization of the glycosyltransferase activity of desVII: analysis of and implications for the biosynthesis of macrolide antibiotics.
    Borisova SA, Zhao L, Melançon III CE, Kao CL, Liu HW.
    J Am Chem Soc; 2004 Jun 02; 126(21):6534-5. PubMed ID: 15161264
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  • 4. Bioconversion of 12-, 14-, and 16-membered ring aglycones to glycosylated macrolides in an engineered strain of Streptomyces venezuelae.
    Jung WS, Han AR, Hong JS, Park SR, Choi CY, Park JW, Yoon YJ.
    Appl Microbiol Biotechnol; 2007 Oct 02; 76(6):1373-81. PubMed ID: 17665193
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  • 5. Genetically engineered biosynthesis of macrolide derivatives including 4-amino-4,6-dideoxy-L-glucose from Streptomyces venezuelae YJ003-OTBP3.
    Pageni BB, Oh TJ, Liou K, Yoon YJ, Sohng JK.
    J Microbiol Biotechnol; 2008 Jan 02; 18(1):88-94. PubMed ID: 18239422
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  • 6. Characterization of glycosyltransferase DesVII and its auxiliary partner protein DesVIII in the methymycin/picromycin biosynthetic pathway.
    Borisova SA, Liu HW.
    Biochemistry; 2010 Sep 21; 49(37):8071-84. PubMed ID: 20695498
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  • 7. In vivo investigation to the macrolide-glycosylating enzyme pair DesVII/DesVIII in Saccharopolyspora erythraea.
    Wu H, Li W, Xin C, Zhang C, Wang Y, Ren S, Ren M, Zhao W, Yuan L, Xu Z, Yuan H, Geng M, Zhang L, Weaver DT, Zhang B.
    Appl Microbiol Biotechnol; 2016 Mar 21; 100(5):2257-66. PubMed ID: 26552796
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  • 9. Heterologous expression of tylosin polyketide synthase and production of a hybrid bioactive macrolide in Streptomyces venezuelae.
    Jung WS, Lee SK, Hong JS, Park SR, Jeong SJ, Han AR, Sohng JK, Kim BG, Choi CY, Sherman DH, Yoon YJ.
    Appl Microbiol Biotechnol; 2006 Oct 21; 72(4):763-9. PubMed ID: 16493552
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  • 12. Combinatorial biosynthesis and antibacterial evaluation of glycosylated derivatives of 12-membered macrolide antibiotic YC-17.
    Shinde PB, Han AR, Cho J, Lee SR, Ban YH, Yoo YJ, Kim EJ, Kim E, Song MC, Park JW, Lee DG, Yoon YJ.
    J Biotechnol; 2013 Oct 20; 168(2):142-8. PubMed ID: 23770075
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  • 15. Redesign of polyene macrolide glycosylation: engineered biosynthesis of 19-(O)-perosaminyl-amphoteronolide B.
    Hutchinson E, Murphy B, Dunne T, Breen C, Rawlings B, Caffrey P.
    Chem Biol; 2010 Feb 26; 17(2):174-82. PubMed ID: 20189107
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  • 16. Exploiting the natural metabolic diversity of Streptomyces venezuelae to generate unusual reduced macrolides.
    Park JW, Oh HS, Jung WS, Park SR, Han AR, Ban YH, Kim EJ, Kang HY, Yoon YJ.
    Chem Commun (Camb); 2008 Nov 30; (44):5782-4. PubMed ID: 19009080
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  • 17. Metabolic engineering of noviose: heterologous expression of novWUS and generation of a new hybrid antibiotic, noviosylated 10-deoxymethynolide/narbonolide, from Streptomyces venezuelae YJ003-OTBP1.
    Pageni BB, Oh TJ, Lee HC, Sohng JK.
    Biotechnol Lett; 2008 Sep 30; 30(9):1609-15. PubMed ID: 18427928
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