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2.
Science ; 349(6253): 1224-8, 2015 Sep 11.
Article in English | MEDLINE | ID: mdl-26359402

ABSTRACT

Podophyllotoxin is the natural product precursor of the chemotherapeutic etoposide, yet only part of its biosynthetic pathway is known. We used transcriptome mining in Podophyllum hexandrum (mayapple) to identify biosynthetic genes in the podophyllotoxin pathway. We selected 29 candidate genes to combinatorially express in Nicotiana benthamiana (tobacco) and identified six pathway enzymes, including an oxoglutarate-dependent dioxygenase that closes the core cyclohexane ring of the aryltetralin scaffold. By coexpressing 10 genes in tobacco-these 6 plus 4 previously discovered-we reconstitute the pathway to (-)-4'-desmethylepipodophyllotoxin (the etoposide aglycone), a naturally occurring lignan that is the immediate precursor of etoposide and, unlike podophyllotoxin, a potent topoisomerase inhibitor. Our results enable production of the etoposide aglycone in tobacco and circumvent the need for cultivation of mayapple and semisynthetic epimerization and demethylation of podophyllotoxin.


Subject(s)
Etoposide/metabolism , Genetic Engineering , Mixed Function Oxygenases/metabolism , Nicotiana/metabolism , Podophyllotoxin/analogs & derivatives , Podophyllotoxin/metabolism , Podophyllum peltatum/enzymology , Topoisomerase Inhibitors/metabolism , Amino Acid Sequence , Biosynthetic Pathways/genetics , Gene Expression Regulation, Enzymologic , Gene Expression Regulation, Plant , Methylation , Mixed Function Oxygenases/genetics , Molecular Sequence Data , Podophyllotoxin/biosynthesis , Podophyllum peltatum/genetics , Nicotiana/genetics , Transcriptome
3.
Org Biomol Chem ; 4(5): 808-16, 2006 Mar 07.
Article in English | MEDLINE | ID: mdl-16493463

ABSTRACT

Secoisolariciresinol dehydrogenase (SDH) catalyzes the NAD+ dependent enantiospecific conversion of secoisolariciresinol into matairesinol. In Podophyllum species, (-)-matairesinol is metabolized into the antiviral compound, podophyllotoxin, which can be semi-synthetically converted into the anticancer agents, etoposide, teniposide and Etopophos. Matairesinol is also a precursor of the cancer-preventative "mammalian" lignan, enterolactone, formed in the gut following ingestion of, for example, various high fiber dietary foods, as well as being an intermediate to numerous defense compounds in vascular plants. This study investigated the mode of enantiospecific Podophyllum SDH catalysis, the order of binding, and the stereospecificity of hydride abstraction/transfer from secoisolariciresinol to NAD+. SDH contains a highly conserved catalytic triad (Ser153, Tyr167 and Lys171), whose activity was abolished with site-directed mutagenesis of Tyr167Ala and Lys171Ala, whereas mutagenesis of Ser153Ala only resulted in a much reduced catalytic activity. Isothermal titration calorimetry measurements indicated that NAD+ binds first followed by the substrate, (-)-secoisolariciresinol. Additionally, for hydride transfer, the incoming hydride abstracted from the substrate takes up the pro-S position in the NADH formed. Taken together, a catalytic mechanism for the overall enantiospecific conversion of (-)-secoisolariciresinol into (-)-matairesinol is proposed.


Subject(s)
Alcohol Oxidoreductases/chemistry , Alcohol Oxidoreductases/metabolism , Podophyllum peltatum/enzymology , Alcohol Oxidoreductases/genetics , Calorimetry/methods , Catalysis , Catalytic Domain/genetics , Magnetic Resonance Spectroscopy , Mechanics , Mutagenesis, Site-Directed , NAD/chemical synthesis , NAD/chemistry , NAD/metabolism , NAD (+) and NADP (+) Dependent Alcohol Oxidoreductases , Podophyllum peltatum/metabolism , Stereoisomerism , Titrimetry
4.
Biochim Biophys Acta ; 1646(1-2): 157-63, 2003 Mar 21.
Article in English | MEDLINE | ID: mdl-12637023

ABSTRACT

A beta-glucosidase with high specificity for podophyllotoxin-4-O-beta-D-glucopyranoside was purified from the leaves of Podophyllum peltatum. The 65-kDa polypeptide had optimum activity at pH 5.0 and was essentially inactive at pH 6.5 or above. Maximum catalytic activity of this glucosidase was obtained at 45 degrees C, but the enzyme was not heat stable. This beta-glucosidase displayed higher substrate specificity for podophyllotoxin-4-O-beta-D-glucopyranoside than for the other lignans tested, and for the (1-->3) linkage of laminaribiose than for other glucosidic linkages.


Subject(s)
Glucosides/metabolism , Podophyllotoxin/analogs & derivatives , Podophyllotoxin/metabolism , Podophyllum peltatum/enzymology , beta-Glucosidase/metabolism , Disaccharides/chemistry , Disaccharides/metabolism , Enzyme Stability , Glucosides/chemistry , Hydrogen-Ion Concentration , Molecular Structure , Plant Leaves/enzymology , Podophyllotoxin/chemistry , Substrate Specificity , Temperature , beta-Glucosidase/chemistry , beta-Glucosidase/isolation & purification
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