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How disorder influences order and vice versa - mutual effects in fusion proteins containing an intrinsically disordered and a globular protein

机译:无序如何影响顺序,反之亦然-包含固有无序和球状蛋白的融合蛋白中的相互作用

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Intrinsically disordered proteins (IDPs) are functional proteins either fully or partly lacking stable secondary and tertiary structure under physiological conditions that are involved in important biological functions, such as regulation and signalling in eukaryotes, prokaryotes and viruses. The function of many IDPs relies upon interactions with partner proteins, often accompanied by conformational changes and disorder-to-order transitions in the unstructured partner. To investigate how disordered and ordered regions interact when fused to one to another within the same protein, we covalently linked the green fluorescent protein to three different, well characterized IDPs and analyzed the conformational properties of the fusion proteins using various biochemical and biophysical approaches. We observed that the overall structure, compactness and stability of the chimeric proteins all differ from what could have been anticipated from the structural features of their isolated components and that they vary as a function of the fused IDP.
机译:固有紊乱蛋白(IDP)是在涉及重要生物学功能(例如真核生物,原核生物和病毒的调节和信号转导)的生理条件下完全或部分缺乏稳定的二级和三级结构的功能蛋白。许多IDP的功能依赖于与伴侣蛋白的相互作用,通常在非结构伴侣中伴随构象变化和无序转移。为了研究无序和有序区域在同一蛋白质中彼此融合时如何相互作用,我们将绿色荧光蛋白与三种不同的,特征充分的IDP共价连接,并使用各种生物化学和生物物理方法分析了融合蛋白的构象特性。我们观察到,嵌合蛋白的整体结构,紧密性和稳定性均不同于从其分离成分的结构特征可以预期到的结果,并且它们随融合IDP的变化而变化。

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