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首页> 外文期刊>Biochemistry >Probing the Active Site of L-Aspartate Oxidase by Site-Directed Mutagenesis: Role of Basic Residues inFUmarate Reduction
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Probing the Active Site of L-Aspartate Oxidase by Site-Directed Mutagenesis: Role of Basic Residues inFUmarate Reduction

机译:通过点定向诱变探测L-天冬氨酸氧化酶的活性位点:基本残留物的作用indumarate降低

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摘要

L-Aspartate oxidase is a very particular oxidase which behaves as a fumarate reductase in anaerobic conditions. Its primary and tertiary structures present remarkable similarity with the soluble fumarate reductase (FRD) from Shewanella frigidimnarina and the flavin subunit of the membrane-bound fumarate reductase from Escherichia coli and Wolinella succinogenes. This and other extensive similarities are consistent with the idea that a common catalytic mechanism for the reduction of fumarate operates for all members of this enzyme group and that the key residues involved in the substrate binding and catalysis are conserved. This manuscript reports information about the role of these basic residues in L-aspartate oxidase: R290, R386, H244, and H351. By means of site-directed mutagenesis, R290 and R386 are mutated to Leu and H35 1 and H244 are mutated both to Ala and Ser. H35 1, H244, and R386 mutants bind substrate analogues with higher dissociation constants and present lower kcat/Kn~ values in the reduction of fumarate. Therefore, the results indicate that R386, H244, and H35 1 are important for the binding of the substrate fumarate and may play an important but not essential role in catalysis. R290, on the contrary, is mainly involved in catalysis and not in substrate binding since its mutation abolishes the catalytic activity without lowering the affinity of the enzyme for the substrate. The redox properties of all the mutants are identical to the wild-type. The findings are consistent with a model of L-aspartate oxidase active site based on the hypothesis proposed for the soluble FRD from S. fridimarina.
机译:L-天冬氨酸氧化酶是一个非常特定的氧化酶,其在厌氧条件下表现为富马酸还原酶。其主要和三级结构与来自雪兰乳果冻中的可溶性富马酸还原酶(FRD)和来自大肠杆菌和Wolinella琥珀因酰基的膜结合富马酸酯还原酶的Flavin亚基的显着相似性。这种和其他广泛的相似性是一致的一种想法,即用于减少富马酸盐的常见催化机制适用于该酶组的所有成员,并且涉及底物结合和催化的关键残留物是保守的。该稿件报告了关于L-天冬氨酸氧化酶:R290,R386,H244和H351中这些基本残留物的作用的信息。通过点定向诱变,R290和R386突变为Leu,H35 1和H244均突变ALA和Ser。 H35 1,H244和R386突变体用较高的解离常数结合底物类似物,并在富马酸盐的还原中呈现下kcat / kn〜值。因此,结果表明R386,H244和H351对于衬底富马酸盐的结合很重要,并且可以在催化中起重要但不是基本作用。相反,R290主要涉及催化作用而不是在底物结合中,因为其突变消除了催化活性,而不会降低酶对基材的亲和力。所有突变体的氧化还原性质与野生型相同。该发现与基于来自S.Fridimarina的可溶性FRD的假设,与L-天冬氨酸氧化酶活性位点的模型一致。

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  • 来源
    《Biochemistry》 |2001年第15期|共7页
  • 作者单位

    Dipartimento di Patologia animale Igiene e sanita pubblica veterinaria - Sez di Biochimica Universita di Milano 20133 Milano Italy and Dipartimento di enetica e Microbiologia Universita di Pavia 27100 Pavia Italy;

    Dipartimento di Patologia animale Igiene e sanita pubblica veterinaria - Sez di Biochimica Universita di Milano 20133 Milano Italy and Dipartimento di enetica e Microbiologia Universita di Pavia 27100 Pavia Italy;

    Dipartimento di Patologia animale Igiene e sanita pubblica veterinaria - Sez di Biochimica Universita di Milano 20133 Milano Italy and Dipartimento di enetica e Microbiologia Universita di Pavia 27100 Pavia Italy;

    Dipartimento di Patologia animale Igiene e sanita pubblica veterinaria - Sez di Biochimica Universita di Milano 20133 Milano Italy and Dipartimento di enetica e Microbiologia Universita di Pavia 27100 Pavia Italy;

    Dipartimento di Patologia animale Igiene e sanita pubblica veterinaria - Sez di Biochimica Universita di Milano 20133 Milano Italy and Dipartimento di enetica e Microbiologia Universita di Pavia 27100 Pavia Italy;

    Dipartimento di Patologia animale Igiene e sanita pubblica veterinaria - Sez di Biochimica Universita di Milano 20133 Milano Italy and Dipartimento di enetica e Microbiologia Universita di Pavia 27100 Pavia Italy;

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  • 正文语种 eng
  • 中图分类 生物化学;
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