Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add filters








Language
Year range
1.
Chinese Journal of Biotechnology ; (12): 1-14, 2012.
Article in Chinese | WPRIM | ID: wpr-304518

ABSTRACT

Plant type III polyketide synthase (PKS) generates backbones of a variety of plant secondary metabolites with diverse functions, and has long been models to elucidate the relationship between the three-dimensional structure and function. More than 80 type IIII PKS crystal structures with different functions have been reported in Protein Data Bank, including the crystal structures of the well-studied Chalcone Synthase of plant type III PKS, as well as the 6 other kinds of PKSs in the family, which are critical for understanding the structural basis for diverse starter molecule selectivity, polyketide chain length and the cyclization reaction. Structure-based analysis and site-directed mutagenesis are foundation for the investigation of enzyme engineering, genetic and metabolic engineering. This review summarized 7 plant-specific type III PKS in the aspects of their crystal structures and functions.


Subject(s)
Acyltransferases , Chemistry , Genetics , Physiology , Amino Acid Sequence , Catalysis , Chalcones , Crystallization , Flavanones , Genetic Engineering , Metabolic Engineering , Molecular Sequence Data , Plant Proteins , Chemistry , Genetics , Physiology , Plants , Genetics , Protein Structure, Secondary , Substrate Specificity
2.
Chinese Journal of Biotechnology ; (12): 1482-1492, 2010.
Article in Chinese | WPRIM | ID: wpr-351570

ABSTRACT

Plant-specific type III polyketide synthase (PKS) produces a variety of plant secondary metabolites with notable structural diversity and biological activity. So far 14 plant-specific type III PKS have been identified according to their enzymatic products, and the corresponding genes have been cloned and characterized. The differences among the various PKS are mainly in their substrate specificities, the number of their condensation reactions, and the type of ring closure of their products. However, numerous studies have revealed the common features among the plant-specific type III PKS, which include sequence homology, similar gene structure, conserved amino acid residues in the reaction center, enzymatic characteristics and reaction mechanism. We briefly reviewed 14 plant-specific type III PKS to better understand genetic and metabolic engineering of plant-specific type III PKS.


Subject(s)
Acyltransferases , Genetics , Metabolism , Physiology , Genes, Plant , Genetic Engineering , Metabolic Engineering , Plants , Genetics , Substrate Specificity
SELECTION OF CITATIONS
SEARCH DETAIL