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首页> 外文期刊>Biochemistry >Kinetic, Crystallographic, and Mechanistic Characterization of TomN: Elucidation of a Function for a 4-Oxalocrotonate Tautomerase Homologue in the Tomaymycin Biosynthetic Pathway
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Kinetic, Crystallographic, and Mechanistic Characterization of TomN: Elucidation of a Function for a 4-Oxalocrotonate Tautomerase Homologue in the Tomaymycin Biosynthetic Pathway

机译:TOMN的动力学,晶体和机械表征:阐明Tommycin生物合成途径中4- oxalocrotonate Tautomerase同源物的功能

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摘要

The biosynthesis of the C ring of the antitumor antibiotic agent, tomaymycin, is proposed to proceed through five enzyme-catalyzed steps from L-tyrosine. The genes encoding these enzymes have recently been cloned and their functions tentatively assigned, but there is limited biochemical evidence supporting the assignments of the last three steps. One enzyme, TomN, shows 58% pairwise sequence similarity with 4-oxalocrotonate tautomerase (4-OT), an enzyme found in a catabolic pathway for aromatic hydrocarbons. The TomN sequence includes three amino acids (Pro-1, Arg-11, and Arg-39) that have been identified as critical catalytic residues in 4-OT. However, the proposed substrate for TomN is very different from that processed by 4-OT. To establish the function and mechanism of TomN and its relationship with 4-OT, we conducted kinetic, mutagenic, and structural studies. The kinetic parameters for TomN, and four alanine mutants, P1A, R11A, R39A, and R61A, were determined using 2-hydroxymuconate, the substrate for 4-OT. The TomN-catalyzed reaction using this substrate compares favorably to that of 4-OT. In addition, the kinetic parameters for the P1A, R11A, and R39A mutants of TomN parallel the trends observed for the corresponding 4-OT mutants, implicating an analogous mechanism. A high-resolution crystal structure (1.4 ?) of TomN shows that the overall structure and the active site region are highly similar to those of 4-OT with a root-mean-square deviation of 0.81 ?. Moreover, key active site residues are positionally conserved. The combined results suggest that the tentative assignment for TomN and the proposed sequence of events in the biosynthetic pathway leading to the formation of the C ring of tomaymycin might not be correct. An alternative pathway that awaits biochemical confirmation is proposed.
机译:提出了抗肿瘤抗生素试剂的C环的生物合成,从L-酪氨酸进行五个酶催化步骤。最近克隆了编码这些酶的基因并暂时分配了它们的功能,但有限的生化证据支持了最后三个步骤的任务。一种浓度,汤姆,显示58%的成对序列相似性与4- oxalocrotonate互变异物酶(4-OT),在分解代谢型烃中发现的酶。 TOMN序列包括三个氨基酸(PRO-1,ARG-11和ARG-39),其已被鉴定为4-OT中的关键催化残基。然而,用于Tomn的所提出的衬底与4-OT处理的底物非常不同。建立Tomn的功能和机制及其与4-OT的关系,我们进行了动力学,致突变性和结构研究。使用2-羟基琥珀酸,4-OT的基材测定汤姆和四种丙氨酸突变体,P1A,R11a,R39a和R61a的动力学参数。使用该基材的Tomn催化反应有利地比较4-OT的反应。另外,对于对应的4-OT突变体观察到的突然趋势的P1A,R11a和R39a突变体的动力学参数暗示了类似机制。托管的高分辨率晶体结构(1.4?)表明整体结构和有源部位区域与4-OT的整体结构高度相似,具有0.81的根部平均方向偏差。此外,关键的活性位点残留物在定位保守。合并的结果表明,在生物合成途径中突出的突出和所提出的事件序列导致形成C环的形成Tomaymycin可能不正确。提出了等待生物化学确认的替代途径。

著录项

  • 来源
    《Biochemistry 》 |2011年第35期| 共12页
  • 作者单位

    Division of Medicinal Chemistry College of Pharmacy University of Texas Austin Texas 78712 United States;

    Department of Chemistry and Biochemistry University of Texas Austin Texas 78712 United States;

    Division of Medicinal Chemistry College of Pharmacy University of Texas Austin Texas 78712 United States;

    Department of Chemistry and Biochemistry University of Texas Austin Texas 78712 United States;

    Division of Medicinal Chemistry College of Pharmacy University of Texas Austin Texas 78712 United States;

    Department of Chemistry and Biochemistry University of Maryland College Park Maryland 20742 United States;

    Department of Chemistry and Biochemistry University of Maryland College Park Maryland 20742 United States;

    Department of Chemistry and Biochemistry University of Texas Austin Texas 78712 United States;

    Division of Medicinal Chemistry College of Pharmacy University of Texas Austin Texas 78712 United States;

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

    Crystallographic; Characterization; Pathway;

    机译:结晶;表征;途径;

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