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Ion Mobility Spectrometry-Mass Spectrometry of Intrinsically Unfolded Proteins: Trying to Put Order into Disorder

机译:本质上未折叠的蛋白质的离子淌度质谱-质谱:试图使秩序陷入混乱。

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Intrinsically disordered proteins do not adopt well-defined native structures and therefore present an intriguing challenge in terms of structural elucidation as they are relatively inaccessible to traditional approaches such as NMR and X-ray crystallography. Many members of this important group of proteins have a distinct biological function and frequently undergo a conformational change on binding to their physiological targets which can in turn modulate their function. Furthermore, many intrinsically unstructured proteins are associated with a wide range of major diseases including cancer and amyloid-related disorders. Here, electrospray ionisation-ion mobility spectrometry-mass spectrometry (ESI-IMS-MS) has been used to probe the conformational characteristics of two intrinsically disordered proteins: apocytochrome c and apo-osteocalcin. Both proteins are structured in their holo-states when bound to their respective substrates, but disordered in their apo-states. Here, the conformational properties of the holo- and the apo-protein forms for both species have been analysed and their mass spectral data and ion mobility spectrometry-derived collision cross-sectional areas, indicative of their physical size, compared to study the relationship between substrate binding and tertiary structure. In both cases, the intrinsically unstructured apo-states populated multiple conformations with larger cross-sectional areas than their holo-analogues, suggesting that intrinsic disorder in proteins does not preclude the formation of preferred conformations. Additionally, analysis of truncated analogues of osteocalcin has located the region of the protein responsible for the conformational changes detected upon metal cation binding. Together, the data illustrate the scope and utility of ESI-IMS-MS for studying the characteristics and properties of intrinsically disordered proteins whose analysis by other techniques is limited.
机译:本质上无序的蛋白质没有采用明确定义的天然结构,因此在结构阐明方面提出了一个令人着迷的挑战,因为它们相对于传统方法(例如NMR和X射线晶体学)而言相对不可及。这一重要蛋白质组的许多成员具有独特的生物学功能,并经常在与它们的生理靶标结合时发生构象变化,进而可以调节其功能。此外,许多本质上非结构化的蛋白质与多种主要疾病有关,包括癌症和淀粉样蛋白相关疾病。在这里,电喷雾电离-离子迁移谱-质谱(ESI-IMS-MS)已用于探测两种内在无序蛋白:脱细胞色素c和脱钙骨钙素的构象特征。当结合到它们各自的底物上时,两种蛋白质都以其完整状态构造,但是在其脱辅基状态上是无序的。在这里,已经分析了这两种物种的整体和脱辅基蛋白形式的构象特性,并比较了它们的质谱数据和离子淌度光谱得出的碰撞截面积,表明了它们的物理尺寸,以研究它们之间的关系。底物结合和三级结构。在这两种情况下,本质上无结构的脱辅基态都比其全类似物具有更大的截面积的多个构象,这表明蛋白质中的固有紊乱并不排除优选构象的形成。另外,对骨钙蛋白截短的类似物的分析已确定了负责金属阳离子结合时检测到的构象变化的蛋白质区域。总之,这些数据说明了ESI-IMS-MS在研究固有紊乱蛋白的特征和特性方面的范围和实用性,而固有紊乱蛋白的其他技术对其分析是有限的。

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