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    Angew Chem Int Ed Engl. 2001 Feb 2;40(3):607-610.

    Insights into the Branched-Chain Formation of Mycarose: Methylation Catalyzed by an (S)-Adenosylmethionine-Dependent Methyltransferase We are grateful to Dr. Eugene Seno and the Lilly Research Laboratories for their generous gift of the plasmid pHJL311 and to the National Institutes of Health for grants (GM 35 906 and 54 346). H.-w.L. also thanks the National Institute of General Medical Sciences for a MERIT Award. T.M.H. was a trainee of the National Institute of General Medical Sciences (Biotechnology Training Grant: 2 T32 GM08347).

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    Department of Chemistry, University of Minnesota Minneapolis, MN 55455 (USA).

    PMID:
    11180386
    [PubMed - as supplied by publisher]

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      • Insights into the Branched-Chain Formation of Mycarose: Methylation Catalyzed by...
        Insights into the Branched-Chain Formation of Mycarose: Methylation Catalyzed by an (S)-Adenosylmethionine-Dependent Methyltransferase We are grateful to Dr. Eugene Seno and the Lilly Research Laboratories for their generous gift of the plasmid pHJL311 and to the National Institutes of Health for grants (GM 35 906 and 54 346). H.-w.L. also thanks the National Institute of General Medical Sciences for a MERIT Award. T.M.H. was a trainee of the National Institute of General Medical Sciences (Biotechnology Training Grant: 2 T32 GM08347).
        Angew Chem Int Ed Engl. 2001 Feb 2 ;40(3):607-610.
        PubMed

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