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Rerouting the folding pathway of the Notch ankyrin domain by reshaping the energy landscape

机译:通过重塑能量格局来改变Notch锚蛋白域的折叠途径

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摘要

The modular nature of repeat proteins has made them a successful target for protein design. Ankyrin repeat, TPR, and leucine rich repeat domains that have been designed solely on consensus information have been shown to have higher thermostability than their biological counterparts. We have previously shown that we can reshape the energy landscape of a repeat protein by adding multiple C-terminal consensus ankyrin repeats to the five N-terminal repeats of the Notch ankyrin domain. Here we explore how the folding mechanism responds to reshaping of the energy landscape. We have used analogous substitutions of a conserved alanine with glycine in each repeat to determine the distribution of structure in the transitions state ensembles of constructs containing one (Nank1-5C1) and two consensus (Nank1-5C2) ankyrin repeats. Whereas folding of the wild-type Notch ankyrin domain is slowed by substitutions in its central repeats, folding of Nank1-5C1 and Nank1-5C2 is slowed by substitutions in the C-terminal repeats. Thus, the addition of C-terminal stabilizing repeats shifts the transition state ensemble towards the C-terminal repeats, rerouting the folding pathway of the ankyrin repeat domain. These findings indicate that for the Notch ankyrin domain, folding pathways are selected based on local energetics.
机译:重复蛋白的模块化性质使它们成为蛋白设计的成功目标。仅基于共有信息设计的锚蛋白重复序列​​,TPR和富含亮氨酸的重复域已显示出比其生物学对应物更高的热稳定性。先前我们已经表明,我们可以通过将多个C末端共有锚蛋白重复序列​​添加到Notch锚蛋白域的五个N末端重复序列中来重塑重复蛋白的能量结构。在这里,我们探索折叠机制如何响应能源格局的重塑。我们在每个重复序列中均使用甘氨酸取代保守的丙氨酸来确定结构的分布状态,这些结构包含一个(Nank1-5C1)和两个共有(Nank1-5C2)锚蛋白重复序列​​。野生型Notch锚蛋白结构域的折叠由于其中心重复的替换而减慢,而Nank1-5C1和Nank1-5C2的折叠因C末端重复的替换而减慢。因此,C末端稳定重复序列的添加使过渡态集合朝向C末端重复序列转移,从而重新路由锚蛋白重复序列​​域的折叠途径。这些发现表明,对于Notch锚蛋白结构域,基于局部能量学选择折叠途径。

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  • 年(卷),期 -1(130),17
  • 年度 -1
  • 页码 5681–5688
  • 总页数 16
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