High-resolution crystal structure of plant carboxylesterase AeCXE1, from Actinidia eriantha, and its complex with a high-affinity inhibitor paraoxon

被引:54
作者
Ileperuma, Nadeesha R.
Marshall, Sean D. G.
Squire, Christopher J.
Baker, Heather M.
Oakeshott, John G.
Russell, Robyn J.
Plummer, Kim M.
Newcomb, Richard D.
Baker, Edward N. [1 ]
机构
[1] Univ Auckland, Sch Biol Sci, Auckland 1, New Zealand
[2] Mt Albert Res Ctr, Hort & Food Res Inst New Zealand Ltd HortRes, Auckland, New Zealand
[3] CSIRO, Div Entomol, Canberra, ACT 2601, Australia
关键词
D O I
10.1021/bi062046w
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Carboxylesterases (CXEs) are widely distributed in plants, where they have been implicated in roles that include plant defense, plant development, and secondary metabolism. We have cloned, overexpressed, purified, and crystallized a carboxylesterase from the kiwifruit species Actinidia eriantha (AeCXE1). The structure of AeCXE1 was determined by X-ray crystallography at 1.4 A resolution. The crystal structure revealed that AeCXE1 is a member of the alpha/beta-hydrolase fold superfamily, most closely related structurally to the hormone-sensitive lipase subgroup. The active site of the enzyme, located in an 11 A deep hydrophobic gorge, contains the conserved catalytic triad residues Ser169, Asp276, and His306. Kinetic analysis using artificial ester substrates showed that the enzyme can hydrolyze a range of carboxylester substrates with acyl groups ranging from C2 to C16, with a preference for butyryl moieties. This preference was supported by the discovery of a three-carbon acyl adduct bound to the active site Ser169 in the native structure. AeCXE1 was also found to be inhibited by organophosphates, with paraoxon (IC50 = 1.1 mu M) a more potent inhibitor than dimethylchlorophosphate (DMCP; IC50 = 9.2 mu M). The structure of AeCXE1 with paraoxon bound was determined at 2.3 A resolution and revealed that the inhibitor binds covalently to the catalytic serine residue, with virtually no change in the structure of the enzyme. The structural information for AeCXE1 provides a basis for addressing the wider functional roles of carboxylesterases in plants.
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页码:1851 / 1859
页数:9
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