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Structure and function of antifreeze proteins

机译:抗冻蛋白的结构和功能

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摘要

High-resolution three-dimensional structures are now available for four of seven non-homologous fish and insect antifreeze proteins (AFPs). For each of these structures, the ice-binding site of the AFP has been defined by site-directed mutagenesis, and ice etching has indicated that the ice surface is bound by the AFP. A comparison of these extremely diverse ice-binding proteins shows that they have the following attributes in common. The binding sites are relatively flat and engage a substantial proportion of the protein's surface area in ice binding. They are also somewhat hydrophobic-more so than that portion of the protein exposed to the solvent. Surface-surface complementarity appears to be the key to tight binding in which the contribution of hydrogen bonding seems to be secondary to van der Waals contacts. [References: 37]
机译:现在,高分辨率的三维结构可用于七个非同源鱼类和昆虫抗冻蛋白(AFP)中的四个。对于这些结构中的每一个,都已通过定点诱变定义了AFP的冰结合位点,而冰蚀刻表明冰面已被AFP结合。这些极其多样的冰结合蛋白的比较表明,它们具有以下共同特征。结合位点相对平坦并且在冰结合中参与蛋白质表面积的很大一部分。它们也有些疏水-比暴露于溶剂的那部分蛋白质更疏水。表面-表面互补性似乎是紧密结合的关键,其中氢键的贡献似乎是范德华接触的次要因素。 [参考:37]

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