Nomura_2017_Biosci.Biotechnol.Biochem_81_81

Reference

Title : Function and application of a non-ester-hydrolyzing carboxylesterase discovered in tulip - Nomura_2017_Biosci.Biotechnol.Biochem_81_81
Author(s) : Nomura T
Ref : Biosci Biotechnol Biochem , 81 :81 , 2017
Abstract :

Plants have evolved secondary metabolite biosynthetic pathways of immense rich diversity. The genes encoding enzymes for secondary metabolite biosynthesis have evolved through gene duplication followed by neofunctionalization, thereby generating functional diversity. Emerging evidence demonstrates that some of those enzymes catalyze reactions entirely different from those usually catalyzed by other members of the same family; e.g. transacylation catalyzed by an enzyme similar to a hydrolytic enzyme. Tuliposide-converting enzyme (TCE), which we recently discovered from tulip, catalyzes the conversion of major defensive secondary metabolites, tuliposides, to antimicrobial tulipalins. The TCEs belong to the carboxylesterase family in the alpha/beta-hydrolase fold superfamily, and specifically catalyze intramolecular transesterification, but not hydrolysis. This non-ester-hydrolyzing carboxylesterase is an example of an enzyme showing catalytic properties that are unpredictable from its primary structure. This review describes the biochemical and physiological aspects of tulipalin biogenesis, and the diverse functions of plant carboxylesterases in the alpha/beta-hydrolase fold superfamily.

PubMedSearch : Nomura_2017_Biosci.Biotechnol.Biochem_81_81
PubMedID: 27696958
Gene_locus related to this paper: tulge-a0a0h5bmx5

Related information

Gene_locus tulge-a0a0h5bmx5

Citations formats

Nomura T (2017)
Function and application of a non-ester-hydrolyzing carboxylesterase discovered in tulip
Biosci Biotechnol Biochem 81 :81

Nomura T (2017)
Biosci Biotechnol Biochem 81 :81