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Expedited mapping of the ligandable proteome using fully functionalized enantiomeric probe pairs

机译:使用全官能化的对映体探针对加速拟成形蛋白质组

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摘要

A fundamental challenge in chemical biology and medicine is to understand and expand the fraction of the human proteome that can be targeted by small molecules. We recently described a strategy that integrates fragment-based ligand discovery with chemical proteomics to furnish global portraits of reversible small-molecule/protein interactions in human cells. Excavating clear structure-activity relationships from these 'ligandability' maps, however, was confounded by the distinct physicochemical properties and corresponding overall protein-binding potential of individual fragments. Here, we describe a compelling solution to this problem by introducing a next-generation set of fully functionalized fragments differing only in absolute stereochemistry. Using these enantiomeric probe pairs, or 'enantioprobes', we identify numerous stereoselective protein-fragment interactions in cells and show that these interactions occur at functional sites on proteins from diverse classes. Our findings thus indicate that incorporating chirality into fully functionalized fragment libraries provides a robust and streamlined method to discover ligandable proteins in cells.
机译:化学生物学和医学中的一个根本挑战是理解和扩大可以由小分子靶向的人蛋白质组的一部分。我们最近描述了一种将基于片段的配体发现与化学蛋白质组学融合的策略,以提供人体细胞中可逆的小分子/蛋白质相互作用的全局肖像。然而,从这些“韧性”地图中的挖掘明确的结构 - 活性关系被不同的物理化学性质和相应的单个碎片的整体蛋白质结合潜力混淆。在这里,我们通过引入仅在绝对立体化学中的下一代全功能化片段的下一代全功能化片段来描述对该问题的引人注目的解决方案。使用这些对映体探针对或'enalioProbes',我们鉴定细胞中的许多立体选择性蛋白质片段相互作用,并表明这些相互作用发生在不同类别的蛋白质上的功能位点。因此,我们的研究结果表明将性掺入全官能化的片段文库中的掺入稳健和精简的方法,以发现细胞中的韧带。

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