首页> 外文学位 >Active site studies of beta-lactamases and DD-peptidases: Part 1. Kinetic and thermodynamic evaluation of phosphonates as beta-lactamase inhibitors. Part 2. Peptide substrate specificity studies in DD-peptidases.
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Active site studies of beta-lactamases and DD-peptidases: Part 1. Kinetic and thermodynamic evaluation of phosphonates as beta-lactamase inhibitors. Part 2. Peptide substrate specificity studies in DD-peptidases.

机译:β-内酰胺酶和DD-肽酶的活性部位研究:第1部分。作为β-内酰胺酶抑制剂的膦酸酯的动力学和热力学评估。第2部分。DD肽酶中的肽底物特异性研究。

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摘要

The class C beta-lactamase of Enterobacter cloacae P99 is irreversibly inactivated by aryl phosphonate monoester monoanions. They react with the active site serine nucleophile in the enzyme to form pentacoordinated transition states/intermediates which rapidly collapse to tetrahedral adducts. The interactions that stabilize these pentacoordinated phosphonate transition states and tetrahedral phosphonate adducts were evaluated against structurally analogous tetrahedral boronate adducts (which are believed to be transition state analogs) by linear free energy correlations. The kinetics of reaction of these inhibitors with the P99 beta-lactamase showed that the pentacoordinated phosphonate transition state is not a good mimic of the tetrahedral boronate adduct formed in the active site of the enzyme. The active site functional groups must interact in a qualitatively different fashion with these differently coordinated species. Studies of the thermodynamics of interaction of the aryl phosphonates with the P99 beta-lactamase, showed that the degree of similarity of the tetracoordinated phosphonate derivatives of the enzyme to acyl transfer transition states cannot generally be assessed by a simple thermodynamic cycle.; Glycyl-L-alpha-amino-epsilon-pimelyl-D-alanyl-D-alanine (GPA) is a very specific substrate for the Streptomyces R61 DD-peptidase (kcat = 69 s-1; Km = 7.9 muM; kcat/Km = 8.7 x 106 M-1 s-1). Since the high specificity was thought to originate from the glycyl-L-alpha-amino-epsilon-pimelyl side chain in GPA, peptide substrates devoid of the specificity elements of this moiety were synthesized and evaluated against the enzyme. A major difficulty in the synthesis of the peptide substrates was largely overcome by a disconnection strategy where a sulfur was introduced in the pimelyl side chain of GPA. The kinetics of reaction of these substrates with the R61 DD-peptidase showed that any modification in the side chain severely impairs the carboxypeptidase activity of these substrates towards the enzyme.; The synthetic methodology described above was then extended to prepare substrates for the Actinomadura R39 DD-peptidase and E. coli PBP2 & PBP5. The Actinomadura R39 DD-peptidase shows less specificity for the side chain than the R61 enzyme, whereas E. coli PBP2 and PBP5 do not catalyze any peptidase reaction of these substrates in vitro. Finally, an inhibitor based on the side chain specificity was designed, synthesized and evaluated against the R61 DD-peptidase.
机译:阴沟肠杆菌P99的C类β-内酰胺酶被芳基膦酸酯单酯单阴离子不可逆地灭活。它们与酶中的活性位点丝氨酸亲核试剂反应,形成五配位过渡态/中间体,其迅速塌陷为四面体加合物。通过线性自由能相关性,针对结构相似的四面体硼酸酯加合物(据认为是过渡态类似物),评估了稳定这些五配位膦酸酯过渡态和四面体膦酸酯加合物的相互作用。这些抑制剂与P99β-内酰胺酶的反应动力学表明,五配位膦酸酯过渡态不是在酶的活性位点形成的四面体硼酸酯加合物的良好模拟。活性位点官能团必须与这些不同配位的物种以质的不同方式相互作用。对芳基膦酸酯与P99β-内酰胺酶相互作用的热力学研究表明,该酶的四配位膦酸酯衍生物与酰基转移过渡态的相似程度通常不能通过简单的热力学循环来评估。糖基-L-α-氨基ε-哌啶基-D-丙氨酰基-D-丙氨酸(GPA)是链霉菌R61 DD肽酶的非常特异的底物(kcat = 69 s-1; Km = 7.9μM; kcat / Km = 8.7 x 106 M-1 s-1)。由于认为高特异性源自GPA中的甘氨酰-L-α-氨基-ε-庚二烯基侧链,因此合成了没有该部分特异性元件的肽底物,并针对该酶进行了评估。肽底物合成的主要困难在很大程度上被克服了一种断开策略,其中在GPA的melylyl侧链中引入了硫。这些底物与R61 DD-肽酶反应的动力学表明,侧链上的任何修饰都严重损害了这些底物对酶的羧肽酶活性。然后,将上述合成方法进行扩展,以制备猕猴桃R39 DD肽酶和大肠杆菌PBP2和PBP5的底物。 Actinomadura R39 DD肽酶对侧链的特异性低于R61酶,而大肠杆菌PBP2和PBP5在体外不催化这些底物的任何肽酶反应。最后,设计,合成了基于侧链特异性的抑制剂,并针对R61 DD肽酶进行了评估。

著录项

  • 作者

    Nagarajan, Rajesh.;

  • 作者单位

    Wesleyan University.;

  • 授予单位 Wesleyan University.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 259 p.
  • 总页数 259
  • 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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