Catalytic Metal Ion Rearrangements Underline Promiscuity and Evolvability of a Metalloenzyme

被引:56
作者
Ben-David, Moshe [1 ]
Wieczorek, Grzegorz [1 ]
Elias, Mikael [2 ]
Silman, Israel [3 ]
Sussman, Joel L. [1 ]
Tawfik, Dan S. [2 ]
机构
[1] Weizmann Inst Sci, Dept Biol Struct, IL-76100 Rehovot, Israel
[2] Weizmann Inst Sci, Dept Biol Chem, IL-76100 Rehovot, Israel
[3] Weizmann Inst Sci, Dept Neurobiol, IL-76100 Rehovot, Israel
基金
美国国家卫生研究院;
关键词
catalytic calcium; metal catalysis; enzyme catalysis; catalytic promiscuity; conformational diversity; D-XYLOSE ISOMERASE; MEDIATED HYDRIDE SHIFT; X-RAY; SERUM PARAOXONASE; DIRECTED EVOLUTION; ENZYME EVOLUTION; BETA-LACTAMASES; BINDING-SITES; CALCIUM-IONS; SUBSTRATE;
D O I
10.1016/j.jmb.2013.01.009
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
Although largely deemed as structurally conserved, catalytic metal ion sites can rearrange, thereby contributing to enzyme evolvability. Here, we show that in paraoxonase-1, a lipo-lactonase, catalytic promiscuity and divergence into an organophosphate hydrolase are correlated with an alternative mode of the catalytic Ca2+. We describe the crystal structures of active-site mutants bearing mutations at position 115. The histidine at this position acts as a base to activate the lactone-hydrolyzing water molecule. Mutations to Trp or Gin indeed diminish paraoxonase-1's lactonase activity; however, the promiscuous organophosphate hydrolase activity is enhanced. The structures reveal a 1.8-angstrom upward displacement towards the enzyme's surface of the catalytic Ca2+ in the His115 mutants and configurational changes in the ligating side chains and water molecules, relative to the wild-type enzyme. Biochemical analysis and molecular dynamics simulations suggest that this alternative, upward metal mode mediates the promiscuous hydrolysis of organophosphates. The upward Ca2+ mode observed in the His115 mutants also appears to mediate the wild type's paraoxonase activity. However, whereas the upward mode dominates in the Trp115 mutant, it is scarcely populated in wild type. Thus, the plasticity of active-site metal ions may permit alternative, latent, promiscuous activities and also provide the basis for the divergence of new enzymatic functions. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1028 / 1038
页数:11
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