Substrate promiscuity of enzymes from the sesquiterpene biosynthetic pathways from Artemisia annua and Tanacetum parthenium allows for novel combinatorial sesquiterpene production.
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Jeroen S. Dickschat | Harro Bouwmeester | H. Bouwmeester | Alexander R van der Krol | A. R. van der Krol | P. Rabe | Jeroen S Dickschat | Arman Beyraghdar Kashkooli | Patrick Rabe | Arman Beyraghdar Kashkooli
[1] D. Bosch,et al. A chicory cytochrome P 450 monooxygenase CYP 71 AV 8 for the oxidation of ( + )-valencene , 2010 .
[2] Benveniste,et al. Cytochrome P450 , 1993, Handbook of Experimental Pharmacology.
[3] I. Warner,et al. Dihydroparthenolide diol, a novel sesquiterpene lactone , 2001 .
[4] H. Bouwmeester,et al. Stable Production of the Antimalarial Drug Artemisinin in the Moss Physcomitrella patens , 2017, Front. Bioeng. Biotechnol..
[5] M. Goedbloed,et al. Reconstitution of the Costunolide Biosynthetic Pathway in Yeast and Nicotiana benthamiana , 2011, PloS one.
[6] D. Bosch,et al. Nicotiana benthamiana as a Production Platform for Artemisinin Precursors , 2010, PloS one.
[7] Nicholas J. Turner,et al. Substrate promiscuity of cytochrome P450 RhF , 2013 .
[8] R. Carasso,et al. Feverfew (Tanacetum parthenium) as a prophylactic treatment for migraine: a double‐blind placebo‐controlled study , 1997 .
[9] D. Ro,et al. Biochemical Conservation and Evolution of Germacrene A Oxidase in Asteraceae* , 2010, The Journal of Biological Chemistry.
[10] D. Bosch,et al. A chicory cytochrome P450 mono‐oxygenase CYP71AV8 for the oxidation of (+)‐valencene , 2011, FEBS letters.
[11] R. D. de Vos,et al. Elucidation and in planta reconstitution of the parthenolide biosynthetic pathway. , 2014, Metabolic engineering.
[12] A. Pareek,et al. Feverfew (Tanacetum parthenium L.): A systematic review , 2011, Pharmacognosy reviews.
[13] Derick R. Peterson,et al. The sesquiterpene lactone parthenolide induces apoptosis of human acute myelogenous leukemia stem and progenitor cells. , 2005, Blood.
[14] V. Guallar,et al. Kauniolide synthase is a P450 with unusual hydroxylation and cyclization-elimination activity , 2018, Nature Communications.
[15] H. Bouwmeester,et al. The metabolite chemotype of Nicotiana benthamiana transiently expressing artemisinin biosynthetic pathway genes is a function of CYP71AV1 type and relative gene dosage. , 2013, The New phytologist.
[16] M. Joerink,et al. Biosynthesis of Costunolide, Dihydrocostunolide, and Leucodin. Demonstration of Cytochrome P450-Catalyzed Formation of the Lactone Ring Present in Sesquiterpene Lactones of Chicory , 2002, Plant Physiology.
[17] Yansheng Zhang,et al. The Molecular Cloning of Artemisinic Aldehyde Δ11(13) Reductase and Its Role in Glandular Trichome-dependent Biosynthesis of Artemisinin in Artemisia annua* , 2008, Journal of Biological Chemistry.
[18] S. Mafu,et al. Probing the promiscuity of ent-kaurene oxidases via combinatorial biosynthesis , 2016, Proceedings of the National Academy of Sciences.
[19] C. Pham-Huy,et al. Chiral Drugs: An Overview , 2006, International journal of biomedical science : IJBS.
[20] D. Nelson. The Cytochrome P450 Homepage , 2009, Human Genomics.
[21] DelindaA . Johnson,et al. Activation of Antioxidant Response Element in Mouse Primary Cortical Cultures with Sesquiterpene Lactones Isolated from Tanacetum parthenium , 2012, Planta Medica.
[22] Mattijs K. Julsing. Bioconversion and combinatorial biosynthesis of selected terpenoids and lignans , 2006 .
[23] H. Bouwmeester,et al. Germacrenes from fresh costus roots. , 2001, Phytochemistry.
[24] K. Cornish,et al. Compartmentalized Metabolic Engineering for Artemisinin Biosynthesis and Effective Malaria Treatment by Oral Delivery of Plant Cells. , 2016, Molecular plant.
[25] Xiaozhuo Chen,et al. Discovery, Structural Determination and Anticancer Activities of Lactucinlike Guaianolides , 2005 .
[26] H. Bouwmeester,et al. Transient production of artemisinin in Nicotiana benthamiana is boosted by a specific lipid transfer protein from A. annua. , 2016, Metabolic engineering.