首页> 外文学位 >Bacillus subtilis adenylosuccinate lyase: I. Identification of enzyme active site residues. II. Model system for elucidating the biochemistry of human acenylosuccinate lyase deficiency .
【24h】

Bacillus subtilis adenylosuccinate lyase: I. Identification of enzyme active site residues. II. Model system for elucidating the biochemistry of human acenylosuccinate lyase deficiency .

机译:枯草芽孢杆菌腺苷琥珀酸裂解酶:I.酶活性位点残基的鉴定。二。模型系统阐明人类生化的酰基琥珀酸裂解酶缺乏。

获取原文
获取原文并翻译 | 示例

摘要

Bacillus subtilis adenylosuccinate lyase is a tetrameric enzyme participating twice in the purine biosynthetic pathway. The reactions catalyzed proceed by a β-elimination mechanism, and His68 and His141 serve as the general acid and base, respectively [Lee et. a1. (1999) Biochemistry 38: 22–32] With the goal of identifying additional active site residues, sequence alignments and homology modeling, based on the crystal structure of Thermotoga maritima adenylosuccinate lyase, were used to select target amino acids. The roles of these residues were subsequently defined through site directed mutagenesis, kinetic characterization, and biophysical studies. One of three conserved histidines, His89 interacts with the AMP portion of substrate. Lys268, part of a conserved signature sequence region, contributes to substrate binding through its close interaction with the phosphoryl group. Glu275, also in the signature sequence region, properly orients His141 for effective catalysis.; Enzyme subunit complementation experiments were also conducted, in which pairs of mutant enzymes were mixed to form hybrid enzymes with restoration of activity, revealing the subunits which contribute residues to the enzyme active site. His141 is contributed from a subunit distinct from that contributing His68 and His89. Lys 268 and Glu275 come from a third, separate subunit, providing the first functional evidence that three subunits contribute residues to each enzyme active site.; This enzyme is also associated with a human disease, adenylosuccinate lyase deficiency. The deficiency arises from several single point mutations in the gene encoding the enzyme, resulting in mild to severe mental retardation, muscle wasting, and autistic features. With the goal of elucidating the underlying biochemistry associated with this human disease, four mutant enzymes, corresponding to mild and severe forms of the deficiency, were constructed and characterized (M26L, R141W, R303C, and S395R, human enzyme numbering). Bacillus subtilis adenylosuccinate lyase was used a model system in which to reconstruct these mutations. Biophysical characterization revealed these mutant enzymes are associated with marked thermal instability and structural aberrations. These particular residues do not play catalytic roles; rather they are in regions key for enzyme stability and structural integrity.
机译:枯草芽孢杆菌腺苷琥珀酸裂解酶是一种四聚酶,参与两次嘌呤生物合成途径。催化的反应通过β-消除机理进行,His 68 和His 141 分别用作一般的酸和碱[Lee et al.。 a1。 (1999) Biochemistry 38:22–32]目的是基于 maritima 腺苷酸琥珀酸裂解酶的晶体结构,识别其他活性位点残基,序列比对和同源性建模。 ,用于选择目标氨基酸。随后通过定点诱变,动力学表征和生物物理研究确定了这些残基的作用。三种保守的组氨酸之一,His 89 与底物的AMP部分相互作用。 Lys 268 是保守的签名序列区域的一部分,它通过与磷酰基的紧密相互作用来促进底物的结合。同样在特征序列区域的Glu 275 可以正确定向His 141 进行有效催化。还进行了酶亚基互补实验,其中混合了成对的突变酶以形成具有恢复活性的杂合酶,揭示了向酶活性位点贡献残基的亚基。 His 141 来自一个不同于其His 68 和His 89 的亚基。 Lys 268 和Glu 275 来自第三个独立的亚基,提供了第一个功能证据,表明三个亚基为每个酶活性位点贡献了残基。该酶还与人类疾病腺苷酸琥珀酸裂合酶缺乏有关。该缺陷源于编码该酶的基因中的几个单点突变,导致轻度至重度智力低下,肌肉消瘦和自闭症特征。为了阐明与该人类疾病有关的潜在生物化学,构建并表征了对应于轻度和严重形式缺陷的四种突变酶(M26L,R141W,R303C和S395R,人类酶编号)。使用枯草芽孢杆菌腺苷琥珀酸裂合酶作为模型系统来重建这些突变。生物物理特征表明,这些突变酶与明显的热不稳定性和结构异常有关。这些特殊的残基不发挥催化作用。相反,它们是酶稳定性和结构完整性的关键区域。

著录项

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.192
  • 总页数 239
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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