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Evolution of binding affinity in a WW domain probed by phage display.

机译:噬菌体展示探测的WW域中结合亲和力的演变。

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摘要

The WW domain is an approximately 38 residue peptide-binding motif that binds a variety of sequences, including the consensus sequence xPPxY. We have displayed hYAP65 WW on the surface of M13 phage and randomized one-third of its three-stranded antiparallel beta-sheet. Improved binding to the hydrophobic peptide, GTPPPPYTVG (WW1), was selected in the presence of three different concentrations of proteinase K to simultaneously drive selection for improved stability as well as high-affinity binding. While some of the selected binders show cooperative unfolding transitions, others show noncooperative thermal unfolding curves. Two novel WW consensus sequences have been identified, which bind to the xPPxY motif with higher affinity than the wild-type hYAP65 WW domain. These WW domain sequences are not precedented in any natural WW domain sequence. Thus, there appear to be a large number of motifs capable of recognizing the target peptide sequence, only a subset of which appear to be used in natural proteins.
机译:WW结构域是约38个残基的肽结合基序,可结合多种序列,包括共有序列xPPxY。我们已经在M13噬菌体表面展示了hYAP65 WW,并随机化了其三链反平行β-折叠的三分之一。在存在三种不同浓度的蛋白酶K的情况下,选择了与疏水肽GTPPPPYTVG(WW1)的改进结合,以同时驱动选择,从而提高稳定性和高亲和力。尽管某些选定的粘合剂显示出协同的展开转变,而另一些则显示了非协同的热展开曲线。已经鉴定出两个新颖的WW共有序列,其以比野生型hYAP65 WW结构域更高的亲和力结合到xPPxY基序。这些WW域序列不是任何自然WW域序列中的先例。因此,似乎存在大量能够识别靶标肽序列的基序,仅其中的一个子集似乎被用于天然蛋白中。

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