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Adipocyte lipid binding protein mutations: In search of binding specificity determinants.

机译:脂肪细胞脂质结合蛋白突变:寻找结合特异性的决定因素。

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摘要

The beta-barrel intracellular lipid binding proteins (iLBPs) have been the focus of much research to understand the roles of ligand acquisition, affinity, specificity, and cavity location in ligand transport. The adipocyte lipid binding protein (ALBP) is a broadly studied member of this family. It is likely that a set of specific amino acids from the mouth and pocket of the binding cavity play a role in directing ligand binding. To test this hypothesis, a series of ALBP mutations were designed to assess the importance of specific residues in ligand binding. A mutation in the binding cavity (E72K) was made to disrupt the internal ordered water molecule structure. Crystal structures of this mutation were solved with and without bound oleic acid at 2.2A and 2.3A respectively. Current refinement of this mutation is inconclusive as to the affect on the water network. A mutation (I73E/A77V/D77G) was made to test the betaE-betaD loop region near the mouth of the binding pocket. Crystal structures of this mutation were solved with and without bound oleic acid bound at 1.5A and 1.7A respectively. Stability, isothermal titration calorimetry, and fluorescent probe binding and displacement assays show that this mutant protein has a different thermodynamic profile and bound cavity position than the native form. A mutation (insertion of A and S after A36) was made to test the region where a helix-turn-helix motif hinges to the beta-barrel at the mouth of the pocket. Binding characterization of this mutation supports weaker ligand binding than the native form. Crystals of this mutation are being pursued. Four additional mutations (M20L, C117F, 1104W, and F27A/A28M/T29L) have been made to test their roles in ALBP binding and are ready for further study.
机译:β桶内细胞内脂质结合蛋白(iLBPs)已成为了解配体运输,亲和力,特异性和空腔在配体运输中的作用的众多研究的重点。脂肪细胞脂质结合蛋白(ALBP)是该家族中被广泛研究的成员。来自结合腔的嘴和口袋的一组特定氨基酸可能在指导配体结合中起作用。为了检验该假设,设计了一系列ALBP突变,以评估特定残基在配体结合中的重要性。在结合腔(E72K)中进行了突变,以破坏内部有序的水分子结构。该突变的晶体结构分别在有和无结合油酸的情况下在2.2A和2.3A下分辨。关于对水网络的影响,目前对该突变的改进尚无定论。进行突变(I73E / A77V / D77G)以测试结合袋口附近的betaE-betaD环区域。该突变的晶体结构分别在有和无结合的油酸分别在1.5A和1.7A结合时解析。稳定性,等温滴定热法,荧光探针结合和置换试验表明,该突变蛋白与天然蛋白相比具有不同的热力学特征和结合的腔位置。进行突变(在A36之后插入A和S)以测试螺旋-转-螺旋基序与口袋口处的β-桶铰接的区域。该突变的结合特征比天然形式支持弱的配体结合。正在寻找这种突变的晶体。已经测试了四个其他突变(M20L,C117F,1104W和F27A / A28M / T29L)以测试它们在ALBP结合中的作用,并准备进一步研究。

著录项

  • 作者

    Reese, Amy Jean.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Biochemistry.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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