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Design of a minimal protein oligomerization domain by a structural approach.

机译:通过结构方法设计最小蛋白质寡聚化结构域。

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摘要

Because of the simplicity and regularity of the alpha-helical coiled coil relative to other structural motifs, it can be conveniently used to clarify the molecular interactions responsible for protein folding and stability. Here we describe the de novo design and characterization of a two heptad-repeat peptide stabilized by a complex network of inter- and intrahelical salt bridges. Circular dichroism spectroscopy and analytical ultracentrifugation show that this peptide is highly alpha-helical and 100% dimeric tinder physiological buffer conditions. Interestingly, the peptide was shown to switch its oligomerization state from a dimer to a trimer upon increasing ionic strength. The correctness of the rational design principles used here is supported by details of the atomic structure of the peptide deduced from X-ray crystallography. The structure of the peptide shows that it is not a molten globule but assumes a unique, native-like conformation. This de novo peptide thus represents an attractive model system for the design of a molecular recognition system.
机译:由于相对于其他结构基序而言,α螺旋状线圈的简单性和规则性,可以方便地用于阐明负责蛋白质折叠和稳定性的分子相互作用。在这里,我们描述了由螺旋间和螺旋内盐桥的复杂网络稳定的两个七肽重复肽的从头设计和表征。圆二色光谱和分析超速离心表明,该肽是高度α-螺旋和100%二聚体火种生理缓冲液条件。有趣的是,该肽显示出随着离子强度的增加其寡聚状态从二聚体转变为三聚体。由X射线晶体学推论得出的肽原子结构的详细信息支持了此处使用的合理设计原则的正确性。肽的结构表明它不是熔融小球,但具有独特的天然样构象。因此,这种从头肽代表了用于分子识别系统设计的有吸引力的模型系统。

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