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A bioinorganic approach to matrix metalloproteinase inhibition.

机译:一种抑制基质金属蛋白酶的生物无机方法。

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摘要

In an effort to develop potent inhibitors of matrix metalloproteinases (MMPs), a bioinorganic approach was employed.; The synthesis of [(TpPh,Me)Zn(OH)] provided for a structural analogue of the zinc-(tris-histidine) catalytic site of MMPs. The model complex was used to gain insight into the discrepancy of MMP inhibitor (MPI) potencies between mercapto alcohols and mercapto ketones. This initial experiment validated the use of the inorganic model complex as a structural model of the MMP catalytic site.; Novel ZBGs for incorporation into MPIs were identified. These ZBGs were complexed with [(TpPh,Me)Zn(OH)] to obtain structural information such as binding mode, bond lengths, and coordination geometry. All ZBG examined were found to bind the model complex in a bidentate fashion, indicating promise for incorporation into a full length MPI.; The inhibitory ability of the novel ZBGs was examined in both fluorescent and colorimetric assays using either the catalytic domain of MMPs or native enzyme expressed in a cell culture of neonatal rat ventricular fibroblasts. All novel ZBGs examined were found to be better inhibitors of MMPs in vitro and in cell culture assays than acetohydroxamic acid (the representative ZBG used in the majority of MPIs to date).; In order to design full-length MPIs, a combined computational-bioinorganic method was developed. Using the structural coordinates from the [(Tp Ph,Me)Zn(ZBG)] complexes, the novel ZBGs were modeled into an X-ray crystal structure of uninhibited MMP-3. This study allowed for the examination of the ZBGs in the active site of an MMP. The novel ZBGs were found to have orientations in the active site of MMP-3 amendable to the attachment of a peptidomimetic backbone, necessary for a full-length MPI.; Finally, the first MPIs based on the heterocyclic ZBGs were developed. The combined computational-bioinorganic method was augmented with the drug discovery program LUDI. Using LUDI enhanced with structural coordinates from [(TpPh,Me)Zn(3-hydroxy-2-methyl-4-pyrone)], several MPIs were designed. The potential inhibitors were synthesized and were examined in a fluorescence-based assay of MMP-1, -2, and -3. The pyrone-based MPls were found to be more potent than their hydroxamate 31 analogues, demonstrating the efficacy of a biomorganic approach to the development of metalloprotein inhibitors.
机译:为了开发有效的基质金属蛋白酶(MMPs)抑制剂,采用了一种生物无机方法。 [(TpPh,Me)Zn(OH)]的合成提供了MMPs锌-(三-组氨酸)催化位点的结构类似物。使用模型复合物深入了解巯基醇和巯基酮之间的MMP抑制剂(MPI)效能差异。该初始实验验证了无机模型配合物作为MMP催化位点的结构模型的用途。鉴定出了用于结合到MPI中的新型ZBG。这些ZBG与[(TpPh,Me)Zn(OH)]络合以获得结构信息,例如结合模式,键长和配位几何形状。发现所有检查的ZBG均以双齿形式结合模型复合物,表明有望并入全长MPI。在新生大鼠心室成纤维细胞的细胞培养物中使用MMPs催化域或天然酶在荧光和比色测定中均检测了新型ZBGs的抑制能力。在体外和细胞培养测定中,发现所检查的所有新型ZBG均比乙酰氧肟酸(迄今为止大多数MPI中使用的代表性ZBG)更好地抑制MMP。为了设计全长MPI,开发了一种组合的计算生物无机方法。使用[(Tp Ph,Me)Zn(ZBG)]配合物的结构坐标,将新型ZBG建模为不受抑制的MMP-3的X射线晶体结构。该研究允许在MMP的活动位点检查ZBG。发现新颖的ZBG在MMP-3的活性位点具有定向,该定向可修饰为全长MPI所必需的拟肽骨架的附接。最后,开发了基于杂环ZBG的第一个MPI。药物发现程序LUDI增强了组合的计算生物无机方法。使用通过[[TpPh,Me)Zn(3-羟基-2-甲基-4-吡喃酮)]的结构坐标增强的LUDI,设计了几种MPI。合成了潜在的抑制剂,并在基于荧光的MMP-1,-2和-3检测中进行了检查。发现基于吡喃酮的MP1比其异羟肟酸酯31类似物更有效,证明了生物有机方法开发金属蛋白抑制剂的功效。

著录项

  • 作者

    Puerta, David Thomas.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 244 p.
  • 总页数 244
  • 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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