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Caught in Action: Selecting Peptide Aptamers Against Intrinsically Disordered Proteins in Live Cells

机译:行动起来:针对活细胞中固有紊乱的蛋白质选择肽适体

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Intrinsically disordered proteins (IDPs) or unstructured segments within proteins play an important role in cellular physiology and pathology. Low cellular concentration, multiple binding partners, frequent post-translational modifications and the presence of multiple conformations make it difficult to characterize IDP interactions in intact cells. We used peptide aptamers selected by using the yeast-two-hybrid scheme and in-cell NMR to identify high affinity binders to transiently structured IDP and unstructured segments at atomic resolution. Since both the selection and characterization of peptide aptamers take place inside the cell, only physiologically relevant conformations of IDPs are targeted. The method is validated by using peptide aptamers selected against the prokaryotic ubiquitin-like protein, Pup, of the mycobacterium proteasome. The selected aptamers bind to distinct sites on Pup and have vastly different effects on rescuing mycobacterial proteasome substrate and on the survival of the Bacille-Calmette-Guèrin, BCG, strain of M. bovis . This technology can be applied to study the elusive action of IDPs under near physiological conditions.
机译:固有的无序蛋白(IDP)或蛋白内的非结构化片段在细胞生理学和病理学中起着重要作用。低细胞浓度,多个结合伴侣,频繁的翻译后修饰以及多种构象的存在使得难以表征完整细胞中IDP的相互作用。我们使用通过酵母-双杂交方案和细胞内NMR选择的肽适体,以原子分辨率鉴定对瞬时结构化IDP和非结构化片段的高亲和力结合剂。由于肽适体的选择和表征都在细胞内部进行,因此仅靶向生理相关的IDP构象。该方法通过使用针对分枝杆菌蛋白酶体原核泛素样蛋白Pup选择的肽适体来验证。所选的适体结合于Pup上的不同位点,并且对拯救分枝杆菌蛋白酶体底物以及对牛分枝杆菌的Bacille-Calmette-GuèrinBCG菌株的存活具有极大不同的影响。该技术可用于研究IDP在近乎生理条件下的难以捉摸的作用。

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