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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Structure and dynamics of the fatty acid binding cavity in apo rat intestinal fatty acid binding protein.
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Structure and dynamics of the fatty acid binding cavity in apo rat intestinal fatty acid binding protein.

机译:载脂蛋白大鼠肠道脂肪酸结合蛋白中脂肪酸结合腔的结构和动力学。

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摘要

The structure and dynamics of the fatty acid binding cavity in I-FABP (rat intestinal fatty acid binding protein) were analyzed. In the crystal structure of apo I-FABP, the probe occupied cavity volume and surface are 539+/-8 A3 and 428 A2, respectively (1.4 A probe). A total of 31 residues contact the cavity with their side chains. The side-chain cavity surface is partitioned according to the residue type as follows: 36-39% hydrophobic, 21-25% hydrophilic, and 37-43% neutral or ambivalent. Thus, the cavity surface is neither like a typical protein interior core, nor is like a typical protein external surface. All hydrophilic residues that contact the cavity-with the exception of Asp74-are clustered on the one side of the cavity. The cavity appears to expand its hydrophobic surface upon fatty acid binding on the side opposite to this hydrophilic patch. In holo I-FABP the fatty acid chain interactions with the hydrophilic side chains are mediated by water molecules. Molecular dynamics (MD) simulation of fully solvated apo I-FABP showed global conformational changes of I-FABP, which resulted in a large, but seemingly transient, exposure of the cavity to the external solvent. The packing density of the side chains lining the cavity, studied by Voronoi volumes, showed the presence of two distinctive small hydrophobic cores. The MD simulation predicts significant structural perturbations of the cavity on the subnanosecond time scale, which are capable of facilitating exchange of I-FABP internal water.
机译:分析了I-FABP(大鼠肠道脂肪酸结合蛋白)中脂肪酸结合腔的结构和动力学。在载脂蛋白I-FABP的晶体结构中,探针占据的腔体积和表面积分别为539 +/- 8 A3和428 A2(1.4 A探针)。共有31个残基通过其侧链与腔接触。侧链腔表面根据残基类型划分如下:疏水性36-39%,亲水性21-25%和中性或矛盾性37-43%。因此,腔表面既不像典型的蛋白质内部核心,也不像典型的蛋白质外部表面。除Asp74外,所有与腔体接触的亲水性残基都聚集在腔体的一侧。当与该亲水性贴剂相反的一侧上的脂肪酸结合时,空腔似乎会扩展其疏水性表面。在完整的I-FABP中,脂肪酸与亲水性侧链的相互作用是由水分子介导的。完全溶剂化的载脂蛋白I-FABP的分子动力学(MD)模拟显示I-FABP的整体构象变化,这导致空腔向外部溶剂大量但看似短暂的暴露。通过Voronoi容量研究,衬砌腔体的侧链的堆积密度表明存在两个独特的小疏水核。 MD模拟预测了亚纳秒级的空腔的显着结构扰动,这些扰动能够促进I-FABP内部水的交换。

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