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Probing a moving target with a plastic unfolding intermediate of an ankyrin-repeat protein

机译:用锚蛋白重复蛋白的塑料展开中间体探测运动目标

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Repeat proteins are composed of tandem arrays of 30- to 40-residue structural motifs and are characterized by short-range interactions between residues close in sequence. Here we have investigated the equilibrium unfolding of D34, a 426-residue fragment of ankyrinR that comprises 12 ankyrin repeats. We show that D34 unfolds via an intermediate in which the C-terminal half of the protein is structured and the N-terminal half is unstructured. Surprisingly, however, we find that we change the unfolding process when we attempt to probe it. Single-site, moderately destabilizing mutations at the C terminus result in different intermediates dominating. The closer to the C terminus the mutation, the fewer repeats are structured in the intermediate; thus, structure in the intermediate frays from the site of the mutation. This behavior contrasts with the robust unfolding of globular proteins in which mutations can destabilize an intermediate but do not cause a different intermediate to be populated. We suggest that, for large repeat arrays, the energy landscape is very rough, with many different low-energy species containing varying numbers of folded modules so the species that dominates can be altered easily by single, conservative mutations. The multiplicity of partly folded states populated in the equilibrium unfolding of D34 is also mirrored by the kinetic folding mechanism of ankyrin-repeat proteins in which we have observed that parallel pathways are accessible from different initiation sites in the structure.
机译:重复蛋白由30至40个残基的结构基序的串联阵列组成,其特征是顺序相邻的残基之间存在短程相互作用。在这里,我们研究了D34的平衡展开,D34是426个残基的锚蛋白R片段,包含12个锚蛋白重复序列​​。我们显示D34通过中间体展开,在该中间体中蛋白质的C端一半是结构化的,而N端一半是未结构化的。但是,令人惊讶的是,我们发现尝试进行探索时会改变展开过程。 C末端的单位适度不稳定位点突变导致不同的中间体占主导地位。突变越接近C末端,则在中间体中结构越少的重复;因此,从突变位点开始的中间磨损结构。此行为与球形蛋白的强大展开形成鲜明对比,在球形蛋白中,突变可破坏中间体的稳定性,但不会导致填充不同的中间体。我们建议,对于大型重复阵列,能量格局非常粗糙,许多不同的低能量物质包含不同数量的折叠模块,因此可以通过单个保守突变轻松改变占主导地位的物质。锚蛋白重复蛋白的动力学折叠机制也反映了D34平衡解折叠中存在的部分折叠状态的多样性,其中我们观察到平行途径可从结构的不同起始位点进入。

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