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Synthetic Seleno-Glutaredoxin 3 Analogues Are Highly Reducing Oxidoreductases with Enhanced Catalytic Efficiency

机译:合成硒-谷胱甘肽3类似物是高还原氧化还原酶,具有增强的催化效率

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摘要

Selenoenzymes have a central role in maintaining cellular redox potential.These enzymes have selenenylsulfide bonds in their active sites that catalyze the reduction of peroxides,sulfoxides,and disulfides.The selenol/disufide exchange reaction is common to all of these enzymes,and the active site redox potential reflects the ratio between the forward and reverse rates of this reaction.The preparation of enzymes containing selenocysteine (Sec) is experimentally challenging.As a result,little is known about the kinetic role of selenols in enzyme active sites,and the redox potential of a selenenylsulfide or diselenide bond in a protein has not been experimentally determined.To fully evaluate the effects of Sec on oxidoreductase redox potential and kinetics,glutaredoxin 3 (Grx3) and all three Sec variants of its conserved ~(11)CXX~(14)C active site were chemically synthesized.Grx3,Grx3(C11U),and Grx3(C14U) exhibited redox potentials of -194,-260,and -275 mV,respectively.The position of redox equilibrium between Grx3(C11U-C14U) (-309 mV) and thioredoxin (Trx) (-270 mV) suggests a possible role for diselenide bonds in biological systems.Kinetic analysis is consistent with the hypothesis that the lower redox potentials of the Sec variants result primarily from the greater nucleophilicity of the active site selenium rather than its role as either a leaving group or a "central atom" in the exchange reaction.The 10~2-10~4-fold increase in the rate of Trx reduction by the seleno-Grx3 analogues demonstrates that oxidoreductases containing either selenenylsulfide or diselenide bonds can have physiologically compatible redox potentials and enhanced reduction kinetics in comparison with their sulfide counterparts.
机译:硒酶在维持细胞氧化还原电位中起着核心作用。这些酶在其活性位点具有硒烯基硫键,催化过氧化物,亚砜和二硫键的还原。硒烯/二硫键交换反应是所有这些酶共同的活性位点氧化还原电势反映了该反应的正向和反向速率之比。含硒代半胱氨酸(Sec)的酶的制备在实验上具有挑战性。因此,人们对硒醇在酶活性位点的动力学作用以及氧化还原电势知之甚少尚未通过实验确定蛋白质中亚硒基硫键或二硒键的含量。为充分评估Sec对氧化还原酶氧化还原电势和动力学的影响,谷胱甘肽毒素3(Grx3)及其保守的〜(11)CXX〜(14)的所有三个Sec变体化学合成了C活性位点.Grx3,Grx3(C11U)和Grx3(C14U)分别表现出-194,-260和-275mV的氧化还原电位。在Grx3(C11U-C14U)(-309 mV)和硫氧还蛋白(Trx)(-270 mV)之间的ox平衡表明二硒键可能在生物系统中起作用。动力学分析与以下假设相一致:Sec的氧化还原电势较低变体的产生主要是由于活性位点硒具有更高的亲核性,而不是其在交换反应中作为离去基团或“中心原子”的作用。Trx还原速率可增加10〜2-10〜4倍。 seleno-Grx3类似物表明,与硒化物对应物相比,含有硒烯基硫醚或二硒键的氧化还原酶可以具有生理相容的氧化还原电势,并具有增强的还原动力学。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2006年第51期|p.16684-16691|共8页
  • 作者单位

    Contribution from the Department of Chemistry and Institute of Catalysis Science and Technology,Technion-Israel Institute of Technology,Technion City,Haifa 32000,Israel,and The Scripps Research Institute,Departments of Molecular Biology,Cell Biology,;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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