Dickens_1997_J.Bacteriol_179_2641

Reference

Title : In vivo and in vitro bioconversion of epsilon-rhodomycinone glycoside to doxorubicin: functions of DauP, DauK, and DoxA - Dickens_1997_J.Bacteriol_179_2641
Author(s) : Dickens ML , Priestley ND , Strohl WR
Ref : Journal of Bacteriology , 179 :2641 , 1997
Abstract :

We recently determined the function of the gene product of Streptomyces sp. strain C5 doxA, a cytochrome P-450-like protein, to be daunorubicin C-14 hydroxylase (M. L. Dickens and W. R. Strohl, J. Bacteriol. 178: 3389-3395, 1996). In the present study, we show that DoxA also catalyzes the hydroxylation of 13-deoxycarminomycin and 13-deoxydaunorubicin to 13-dihydrocarminomycin and 13-dihydrodaunorubicin, respectively, as well as oxidizing the 13-dihydro-anthracyclines to their respective 13-keto forms. The Streptomyces sp. strain C5 dauP gene product also was shown unequivocally to remove the carbomethoxy group of the epsilon-rhodomycinone-glycoside (rhodomycin D) to form 10-carboxy-13-deoxycarminomycin. Additionally, Streptomyces sp. strain C5 DauK was found to methylate the anthracyclines rhodomycin D, 10-carboxy-13-deoxycarminomycin, and 13-deoxy-carminomycin, at the 4-hydroxyl position, indicating a broader substrate specificity than was previously known. The products of Streptomyces sp. strain C5 doxA, dauK, and dauP were sufficient and necessary to confer on Streptomyces lividans TK24 the ability to convert rhodomycin D, the first glycoside in daunorubicin and doxorubicin biosynthesis, to doxorubicin.

PubMedSearch : Dickens_1997_J.Bacteriol_179_2641
PubMedID: 9098063
Gene_locus related to this paper: strsp-dauP

Related information

Gene_locus strsp-dauP

Citations formats

Dickens ML, Priestley ND, Strohl WR (1997)
In vivo and in vitro bioconversion of epsilon-rhodomycinone glycoside to doxorubicin: functions of DauP, DauK, and DoxA
Journal of Bacteriology 179 :2641

Dickens ML, Priestley ND, Strohl WR (1997)
Journal of Bacteriology 179 :2641