...
首页> 外文期刊>JBIC Journal of Biological Inorganic Chemistry >Analyzing the catalytic role of active site residues in the Fe-type nitrile hydratase from Comamonas testosteroni Ni1
【24h】

Analyzing the catalytic role of active site residues in the Fe-type nitrile hydratase from Comamonas testosteroni Ni1

机译:分析鸡毛单胞菌Ni1的Fe型腈水合酶中活性位点残基的催化作用

获取原文
获取原文并翻译 | 示例

摘要

A strictly conserved active site arginine residue (αR157) and two histidine residues (αH80 and αH81) located near the active site of the Fe-type nitrile hydratase from Comamonas testosteroni Ni1 (CtNHase), were mutated. These mutant enzymes were examined for their ability to bind iron and hydrate acrylonitrile. For the αR157A mutant, the residual activity (k cat = 10 ± 2 s−1) accounts for less than 1 % of the wild-type activity (k cat = 1100 ± 30 s−1) while the K m value is nearly unchanged at 205 ± 10 mM. On the other hand, mutation of the active site pocket αH80 and αH81 residues to alanine resulted in enzymes with k cat values of 220 ± 40 and 77 ± 13 s−1, respectively, and K m values of 187 ± 11 and 179 ± 18 mM. The double mutant (αH80A/αH81A) was also prepared and provided an enzyme with a k cat value of 132 ± 3 s−1 and a K m value of 213 ± 61 mM. These data indicate that all three residues are catalytically important, but not essential. X-ray crystal structures of the αH80A/αH81A, αH80W/αH81W, and αR157A mutant CtNHase enzymes were solved to 2.0, 2.8, and 2.5 Å resolutions, respectively. In each mutant enzyme, hydrogen-bonding interactions crucial for the catalytic function of the αCys104-SOH ligand are disrupted. Disruption of these hydrogen bonding interactions likely alters the nucleophilicity of the sulfenic acid oxygen and the Lewis acidity of the active site Fe(III) ion.
机译:严格保守的活性位点精氨酸残基(αR157)和两个组氨酸残基(αH80和αH81)位于Comomonas testosteroni Ni1(CtNHase)的Fe型腈水合酶的活性位点附近。检查这些突变酶结合铁和水合丙烯腈的能力。对于αR157A突变体,残留活性(k cat = 10±2 s-1)占野生型活性的不到1%(k cat = 1100±30 s-1),而K m值几乎保持不变在205±10 mM。另一方面,将活性位点口袋中的αH80和αH81残基突变为丙氨酸导致产生的酶的k cat值分别为220±40和77±13 s-1,K m值为187±11和179±18毫米还制备了双突变体(αH80A/αH81A),并提供了一种酶,其k cat值为132±3 s-1和k m值为213±61 mM。这些数据表明所有三个残基都具有催化作用,但不是必需的。 αH80A/αH81A,αH80W/αH81W和αR157A突变CtNHase酶的X射线晶体结构分别解析为2.0、2.8和2.5Å分辨率。在每种突变酶中,对αCys104-SOH配体的催化功能至关重要的氢键相互作用被破坏。这些氢键相互作用的破坏可能会改变亚磺酸氧的亲核性和活性位Fe(III)离子的路易斯酸度。

著录项

  • 来源
    《JBIC Journal of Biological Inorganic Chemistry 》 |2015年第5期| 885-894| 共10页
  • 作者单位

    Department of Chemistry Marquette University">(1);

    Department of Chemistry and Biochemistry Loyola University Chicago">(2);

    Department of Microbiology and Molecular Genetics Michigan State University">(4);

    Department of Chemistry and Biochemistry Loyola University Chicago">(2);

    Department of Chemistry and Biochemistry Loyola University Chicago">(2);

    Department of Chemistry and Biochemistry Loyola University Chicago">(2);

    Department of Chemistry and Biochemistry Loyola University Chicago">(2);

    Department of Chemistry and Biochemistry Loyola University Chicago">(2);

    Department of Chemistry and Biochemistry Loyola University Chicago">(3);

    Department of Chemistry Marquette University">(1);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nitrile hydratase; Iron; Hydrolysis; X-ray crystallography;

    机译:腈水合酶;铁;水解;X射线晶体学;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号