Title of article
Directed Evolution and Structural Characterization of a Simvastatin Synthase Original Research Article
Author/Authors
Xue Gao، نويسنده , , Xinkai Xie، نويسنده , , Inna Pashkov، نويسنده , , Michael R. Sawaya، نويسنده , , Janel Laidman، نويسنده , , Wenjun Zhang، نويسنده , , Ralph Cacho، نويسنده , , Todd O. Yeates، نويسنده , , Yi Tang، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2009
Pages
11
From page
1064
To page
1074
Abstract
Enzymes from natural product biosynthetic pathways are attractive candidates for creating tailored biocatalysts to produce semisynthetic pharmaceutical compounds. LovD is an acyltransferase that converts the inactive monacolin J acid (MJA) into the cholesterol-lowering lovastatin. LovD can also synthesize the blockbuster drug simvastatin using MJA and a synthetic α-dimethylbutyryl thioester, albeit with suboptimal properties as a biocatalyst. Here we used directed evolution to improve the properties of LovD toward semisynthesis of simvastatin. Mutants with improved catalytic efficiency, solubility, and thermal stability were obtained, with the best mutant displaying an ∼11-fold increase in an Escherichia coli-based biocatalytic platform. To understand the structural basis of LovD enzymology, seven X-ray crystal structures were determined, including the parent LovD, an improved mutant G5, and G5 cocrystallized with ligands. Comparisons between the structures reveal that beneficial mutations stabilize the structure of G5 in a more compact conformation that is favorable for catalysis.
Journal title
Chemistry and Biology
Serial Year
2009
Journal title
Chemistry and Biology
Record number
1159761
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