Substrate Specificity Combined with Stereopromiscuity in Glutathione Transferase A4-4-Dependent Metabolism of 4-Hydroxynonenal

被引:35
作者
Balogh, Larissa M. [1 ]
Le Trong, Isolde [2 ]
Kripps, Kimberly A. [1 ]
Shireman, Laura M. [1 ]
Stenkamp, Ronald E. [2 ]
Zhang, Wei [3 ]
Mannervik, Bengt [3 ]
Atkins, William M. [1 ]
机构
[1] Univ Washington, Dept Med Chem, Seattle, WA 98195 USA
[2] Univ Washington, Dept Biol Struct, Biomol Struct Ctr, Seattle, WA 98195 USA
[3] Uppsala Univ, Dept Biochem & Organ Chem, Biomed Ctr, SE-75123 Uppsala, Sweden
基金
瑞典研究理事会; 美国国家卫生研究院;
关键词
HIGH CATALYTIC EFFICIENCY; S-TRANSFERASE; LIPID-PEROXIDATION; 4-HYDROXY-TRANS-2-NONENAL HNE; MOLECULAR-REPLACEMENT; CRYSTAL-STRUCTURES; A1-1; PROTEIN; IDENTIFICATION; REFINEMENT;
D O I
10.1021/bi902038u
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Conjugation to glutathione (GSH) by glutathione transferase A4-4 (GSTA4-4) is a major route of elimination for the lipid peroxidation product 4-hydroxynonenal (HNE), a toxic compound that contributes to numerous diseases. Both enantiomers of HNE are presumed to be toxic, and GSTA4-4 has negligible stereoselectivity toward them, despite its high catalytic chemospecificity for alkenals. In contrast to the highly flexible, and substrate promiscuous, GSTA1-1 isoform that has poor catalytic efficiency with HNE, GSTA4-4 has been postulated to be a rigid template that is preorganized for HNE metabolism. However, the combination of high substrate chemoselectivity and low substrate stereoselectivity is intriguing. The mechanism by which GSTA4-4 achieves this combination is important, because it must metabolize both enantiomers of HNE to efficiently detoxify the biologically formed mixture. The crystal structures of GSTA4-4 and ail engineered variant of GSTA1-1 with high catalytic efficiency toward HNE, cocrystallized with a GSH-HNE conjugate analogue, demonstrate that GSTA4-4 undergoes no enantiospecific induced fit; instead, the active site residue Arg15 is ideally located to interact with the 4-hydroxyl group of either HNE enantiomer. The results reveal an evolutionary strategy for achieving biologically useful stereopromiscuity toward a toxic racemate, concomitant with high catalytic efficiency and substrate specificity toward ail endogenously formed toxin.
引用
收藏
页码:1541 / 1548
页数:8
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