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The molecular chaperone β-casein prevents amorphous and fibrillar aggregation of α-lactalbumin by stabilisation of dynamic disorder

机译:分子伴侣β-酪蛋白通过稳定动态障碍防止α-乳白蛋白的无定形和纤维状聚集

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摘要

Deficits in protein homeostasis (proteostasis) are typified by the partial unfolding or misfolding of native proteins leading to amorphous or fibrillar aggregation, events that have been closely associated with diseases including Alzheimer's and Parkinson's diseases. Molecular chaperones are intimately involved in maintaining proteostasis, and their mechanisms of action are in part dependent on the morphology of aggregation-prone proteins. This study utilised native ion mobility–mass spectrometry to provide molecular insights into the conformational properties and dynamics of a model protein, α-lactalbumin (α-LA), which aggregates in an amorphous or amyloid fibrillar manner controlled by appropriate selection of experimental conditions. The molecular chaperone β-casein (β-CN) is effective at inhibiting amorphous and fibrillar aggregation of α-LA at sub-stoichiometric ratios, with greater efficiency against fibril formation. Analytical size-exclusion chromatography demonstrates the interaction between β-CN and amorphously aggregating α-LA is stable, forming a soluble high molecular weight complex, whilst with fibril-forming α-LA the interaction is transient. Moreover, ion mobility–mass spectrometry (IM-MS) coupled with collision-induced unfolding (CIU) revealed that α-LA monomers undergo distinct conformational transitions during the initial stages of amorphous (order to disorder) and fibrillar (disorder to order) aggregation. The structural heterogeneity of monomeric α-LA during fibrillation is reduced in the presence of β-CN along with an enhancement in stability, which provides a potential means for preventing fibril formation. Together, this study demonstrates how IM-MS and CIU can investigate the unfolding of proteins as well as examine transient and dynamic protein–chaperone interactions, and thereby provides detailed insight into the mechanism of chaperone action and proteostasis mechanisms.
机译:蛋白质稳态(蛋白稳态)的不足通常表现为天然蛋白质的部分解折叠或错误折叠,导致无定形或纤维状聚集,这些事件与包括阿尔茨海默氏病和帕金森氏病在内的疾病密切相关。分子伴侣与维持蛋白稳态密切相关,其作用机制部分取决于易聚集蛋白的形态。这项研究利用天然离子迁移率质谱技术提供分子洞察力,以了解模型蛋白α-乳白蛋白(α-LA)的构象性质和动力学,该蛋白以无定形或淀粉样原纤维的方式聚集,并通过适当选择实验条件进行控制。分子伴侣β-酪蛋白(β-CN)可有效抑制亚化学计量比的α-LA的无定形和原纤维聚集,并且对原纤维形成具有更高的效率。分析型尺寸排阻色谱法表明,β-CN与无定形聚集的α-LA之间的相互作用是稳定的,形成可溶的高分子量复合物,而形成原纤维的α-LA之间的相互作用是瞬时的。此外,离子淌度-质谱(IM-MS)与碰撞诱导展开(CIU)的结合表明,α-LA单体在无定形(无序排列)和纤维状(无序排列)聚集的初始阶段经历了明显的构象转变。 。 β-CN的存在降低了原纤化过程中单体α-LA的结构异质性,并增强了稳定性,这为防止原纤维形成提供了可能的手段。这项研究共同证明了IM-MS和CIU如何研究蛋白质的展开以及检查瞬时的和动态的蛋白质-分子伴侣之间的相互作用,从而为分子伴侣作用机理和蛋白稳定机制提供了详细的见识。

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