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Ice-binding surface of fish type III antifreeze.

机译:鱼III型防冻剂的结冰表面。

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摘要

We employed computational techniques, including molecular docking, energy minimization, and molecular dynamics simulation, to investigate the ice-binding surface of fish type III antifreeze protein (AFP). The putative ice-binding site was previously identified by mutagenesis, structural analysis, and flatness evaluation. Using a high-resolution x-ray structure of fish type III AFP as a model, we calculated the ice-binding interaction energy of 11 surface patches chosen to cover the entire surface of the protein. These various surface patches exhibit small but significantly different ice-binding interaction energies. For both the prism ice plane and an "ice" plane in which water O atoms are randomly positioned, our calculations show that a surface patch containing 14 residues (L19, V20, T18, S42, V41, Q9, P12, A16, M21, T15, Q44, I13, N14, K61) has the most favorable interaction energy and corresponds to the previously identified ice-binding site of type III AFP. Although in general agreement with the earlier studies, our results also suggest that the ice-binding site may be larger than the previously identified "core" cluster that includes mostly hydrophilic residues. The enlargement mainly results from the inclusion of peripheral hydrophobic residues and K61.
机译:我们采用了包括分子对接,能量最小化和分子动力学模拟在内的计算技术来研究鱼类III型抗冻蛋白(AFP)的冰结合表面。事先通过诱变,结构分析和平坦度评估确定了假定的冰结合位点。使用鱼类III型AFP的高分辨率X射线结构作为模型,我们计算了11个表面覆盖物的冰结合相互作用能,这些表面覆盖物被选择覆盖蛋白质的整个表面。这些不同的表面斑块显示出很小但明显不同的结冰相互作用能。对于棱镜冰平面和水O原子随机放置在其中的“冰”平面,我们的计算表明,包含14个残基(L19,V20,T18,S42,V41,Q9,P12,A16,M21, T15,Q44,I13,N14,K61)具有最有利的相互作用能,并且对应于先前确定的III型AFP的冰结合位点。尽管与早期研究大体一致,但我们的研究结果还表明,冰结合位点可能比先前确定的主要包含亲水性残基的“核心”簇更大。增大主要是由于包含外围疏水残基和K61。

著录项

  • 作者

    Chen, G; Jia, Z;

  • 作者单位
  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 en
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