Middleton Adam J, Brown Alan M, Davies Peter L, Walker Virginia K
Department of Biochemistry, Queen's University, Kingston, Ontario, Canada K7L 3N6.
FEBS Lett. 2009 Feb 18;583(4):815-9. doi: 10.1016/j.febslet.2009.01.035. Epub 2009 Jan 29.
The antifreeze protein of Lolium perenne, a perennial ryegrass, was previously modeled as a beta-roll with two extensive flat beta-sheets on opposite sides of the molecule. Here we have validated the model with a series of nine site-directed steric mutations in which outward-pointing short side-chain residues were replaced by tyrosine. None of these disrupted the fold. Mutations on one of the beta-sheets and on the sides of the protein retained 70% or greater activity. Three mutations that clustered on the other flat surface lost up to 90% of their antifreeze activity and identify this beta-sheet as the ice-binding face.
多年生黑麦草的抗冻蛋白,之前被模拟为一个β-卷,在分子相对的两侧有两个大面积的扁平β-折叠片。在此,我们通过一系列九个定点空间突变验证了该模型,其中向外突出的短侧链残基被酪氨酸取代。这些突变均未破坏其折叠结构。在其中一个β-折叠片以及蛋白质侧面的突变保留了70%或更高的活性。聚集在另一个扁平表面上的三个突变失去了高达90%的抗冻活性,并确定这个β-折叠片为冰结合面。