Structure-based engineering of benzalacetone synthase

被引:9
|
作者
Shimokawa, Yoshihiko [1 ]
Morita, Hiroyuki [1 ]
Abe, Ikuro [1 ]
机构
[1] Univ Tokyo, Grad Sch Pharmaceut Sci, Bunkyo Ku, Tokyo 1130033, Japan
关键词
Polyketide synthase; Benzalacetone synthase; Enzyme; Site-directed mutagenesis; Enzyme engineering; III POLYKETIDE SYNTHASES; CHALCONE SYNTHASE; RHEUM-PALMATUM; CRYSTAL-STRUCTURE; BIOSYNTHESIS; SPECIFICITY; MECHANISM; COENZYME;
D O I
10.1016/j.bmcl.2010.07.022
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Benzalacetone synthase (BAS) and chalcone synthase (CHS) are plant-specific type III polyketide synthases (PKSs), sharing 70% amino acid sequence identity and highly homologous overall protein structures. BAS catalyzes the decarboxylative coupling of 4-coumaroyl-CoA with malonyl-CoA to produce the diketide benzalacetone, whereas CHS produces the tetraketide chalcone by iterative condensations with three molecules of malonyl-CoA, and folding the resulting intermediate into a new aromatic ring system. Recent crystallographic analyses of Rheum palmatum BAS revealed that the characteristic substitution of Thr132 (numbering of Medicago sativa CHS2), a conserved CHS residue lining the active-site cavity, with Leu causes steric contraction of the BAS active-site to produce the diketide, instead of the tetraketide. To test this hypothesis, we constructed a set of R. palmatum BAS site-directed mutants (L132G, L132A, L132S, L132C, L132T, L132F, L132Y, L132W and L132P), and investigated the mechanistic consequences of the point mutations. As a result, the single amino acid substitution L132T restored the chalcone-forming activity in BAS, whereas the Ala, Ser, and Cys substitutions expanded the product chain length to produce 4-coumaroyltriacetic acid lactone (CTAL) after three condensations with malonyl-CoA, but without the formation of the aromatic ring system. Homology modeling suggested that this is probably caused by the restoration of the 'coumaroyl binding pocket' in the active-site cavity. These findings provide further insights into the structural details of the catalytic mechanism of the type III PKS enzymes. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:5099 / 5103
页数:5
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