Elucidation of the Verrucofortine Biosynthetic Pathway Enables Identification of a Cyclodipeptide Prenyltransferase with High Catalytic Efficiency. [PDF]
Wei HL, Pang LD, Chen XL, Li SM.
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De novo transcriptome based insights into secondary metabolite biosynthesis in Malaxis acuminata (Jeevak)-A therapeutically important orchid. [PDF]
Bhattacharyya P +8 more
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Enzyme promiscuity powers plant chemical diversity: A case of prenyltransferases in biosynthesis of quinone derivatives. [PDF]
Yokoyama R.
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In vivo and in vitro Reconstitution of Biosynthesis of N-Prenylated Phenazines Revealing Diverse Phenazine-Modifying Enzymes. [PDF]
Kato T +7 more
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Telescoping a Prenyltransferase and a Diterpene Synthase to Transform Unnatural FPP Derivatives to Diterpenoids. [PDF]
Struwe H +6 more
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Diprenylated cyclodipeptide production by changing the prenylation sequence of the nature's synthetic machinery. [PDF]
Li W, Coby L, Zhou J, Li SM.
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Cryo-EM Structure of the Cyclase Domain and Evaluation of Substrate Channeling in a Bifunctional Class II Terpene Synthase. [PDF]
Gaynes MN +5 more
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Substrate-Multiplexed Assessment of Aromatic Prenyltransferase Activity. [PDF]
Higgins PM, Wehrli NG, Buller AR.
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Transcription of biochemical defenses by the harmful brown tide pelagophyte, Aureococcus anophagefferens, in response to the protozoan grazer, Oxyrrhis marina. [PDF]
Dawydiak W, Gobler CJ.
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Promiscuity of an Alcohol-Dependent Hemiterpene Pathway for the In Vivo Production of a Non-Natural Alkylated Tryptophan Derivative. [PDF]
Gayen AK +3 more
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