首页> 外文期刊>Biochemistry >Comparison of Alicyclobacillus acidocaldarius o-Succinylbenzoate Synthase to Its Promiscuous N-Succinylamino Acid Racemase/o-Succinylbenzoate Synthase Relatives
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Comparison of Alicyclobacillus acidocaldarius o-Succinylbenzoate Synthase to Its Promiscuous N-Succinylamino Acid Racemase/o-Succinylbenzoate Synthase Relatives

机译:酸钙酸O-琥珀苯甲酸酯合酶对其混杂的正琥珀酰胺酸性酶/ O-琥珀苯甲酸酯合酶亲属的比较

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摘要

Studying the evolution of catalytically promiscuous enzymes like those from the N-succinylamino acid racemase/o-succinylbenzoate synthase (NSAR/OSBS) subfamily can reveal mechanisms by which new functions evolve. Some enzymes in this subfamily have only OSBS activity, while others catalyze OSBS and NSAR reactions. We characterized several NSAR/OSBS subfamily enzymes as a step toward determining the structural basis for evolving NSAR activity. Three enzymes were promiscuous, like most other characterized NSAR/OSBS subfamily enzymes. However, Alicyclobacillus acidocaldarius OSBS (AaOSBS) efficiently catalyzes OSBS activity but lacks detectable NSAR activity. Competitive inhibition and molecular modeling show that AaOSBS binds N-succinylphenylglycine with moderate affinity in a site that overlaps its normal substrate. On the basis of possible steric conflicts identified by molecular modeling and sequence conservation within the NSAR/OSBS subfamily, we identified one mutation, Y299I, that increased NSAR activity from undetectable to 1.2 X 10(2) M-1 s(-1) without affecting OSBS activity. This mutation does not appear to affect binding affinity but instead affects k(cat), by reorienting the substrate or modifying conformational changes to allow both catalytic lysines to access the proton that is moved during the reaction. This is the first site known to affect reaction specificity in the NSAR/OSBS subfamily. However, this gain of activity was obliterated by a second mutation, M18F. Epistatic interference by M18F was unexpected because a phenylalanine at this position is important in another NSAR/OSBS enzyme. Together, modest NSAR activity of Y299I AaOSBS and epistasis between sites 18 and 299 indicate that additional sites influenced the evolution of NSAR reaction specificity in the NSAR/OSBS subfamily.
机译:研究催化混杂酶的进化,如来自N-琥珀酰氨基酸外周酶/ O-琥珀苯甲酸酯合酶(NSAR / OSB)亚家族的那些,可以揭示新功能演变的机制。该亚家族中的一些酶仅具有OSBS,而其他酶催化OSB和NSAR反应。我们以几种NSAR / OSBS亚家族酶表征为朝着确定用于演化NSAR活性的结构基础的步骤。三种酶被混杂,如大多数其他特征的NSAR / OSBS亚家族酶。然而,alicclobacillus acidocaldarius osb(aaosbs)有效地催化OSBs活性但缺乏可检测的NSAR活性。竞争性抑制和分子建模表明,AASBS在与其正常衬底重叠的位点中具有中等亲和力的N-琥珀酰基甘氨酸。在基于通过分子建模和NSAR / OSB亚家族内的序列保留鉴定的可能的空间冲突,我们确定了一种突变,即从未检测到1.2×10(2)M-1 S(-1)的NSAR活性增加的突变。没有影响OSBS活动。该突变似乎不会影响结合亲和力,而是影响K(猫),通过重新定向底物或改变构象变化,以允许催化赖氨酸进入在反应过程中移动的质子。这是已知在NSAR / OSBS子类中影响反应特异性的第一个网站。然而,这种活性的增益被第二个突变,M18F湮灭。 M18F的伪造干扰是出乎意料的,因为该位置的苯丙氨酸在另一种NSAR / OSBS酶中是重要的。 y299i ​​aaosbs和站点之间的适度Nsar活性在一起,位点18和299之间的简历表明,附加位点影响NSAR / OSBS亚家族中NSAR反应特异性的演变。

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  • 来源
    《Biochemistry》 |2018年第26期|共14页
  • 作者单位

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

    Poornaprajna Inst Bangalore Karnataka India;

    Albert Einstein Coll Med Dept Biochem 1300 Morris Pk Ave Bronx NY 10461 USA;

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

    Baylor Univ Dept Chem &

    Biochem CPRIT Synth &

    Drug Lead Discovery Lab One Bear Pl Waco TX 76798 USA;

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

    Albert Einstein Coll Med Dept Biochem 1300 Morris Pk Ave Bronx NY 10461 USA;

    Baylor Univ Dept Chem &

    Biochem CPRIT Synth &

    Drug Lead Discovery Lab One Bear Pl Waco TX 76798 USA;

    Rutgers State Univ RCSB Prot Data Bank Inst Quantitat Biomed Piscataway NJ 08854 USA;

    Baylor Univ Dept Chem &

    Biochem CPRIT Synth &

    Drug Lead Discovery Lab One Bear Pl Waco TX 76798 USA;

    Albert Einstein Coll Med Dept Biochem 1300 Morris Pk Ave Bronx NY 10461 USA;

    Texas A&

    M Univ Dept Biochem &

    Biophys 2128 TAMU College Stn TX 77843 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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