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Diverse Functionalization of Aurora-A Kinase at Specified Surface and Buried Sites by Native Chemical Modification

机译:通过自然化学修饰在指定表面和埋藏位置对Aurora-A激酶进行多种功能化

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摘要

The ability to obtain a homogeneous sample of protein is invaluable when studying the effect of alterations such as post-translational modifications (PTMs). Selective functionalization of a protein to investigate the effect of PTMs on its structure or activity can be achieved by chemical modification of cysteine residues. We demonstrate here that one such technique, which involves conversion of cysteine to dehydroalanine followed by thiol nucleophile addition, is suitable for the site-specific installation of a wide range of chemical mimics of PTMs, including acetylated and dimethylated lysine, and other unnatural amino acids. These reactions, optimized for the clinically relevant kinase Aurora-A, readily proceed to completion as revealed by intact protein mass spectrometry. Moreover, these reactions proceed under non-denaturing conditions, which is desirable when working with large protein substrates. We have determined reactivity trends for a diverse range of thiol nucleophile addition reactions at two separate sites on Aurora-A, and we also highlight limitations when using thiol nucleophiles that contain basic functional groups. We show that chemical modification of cysteine residues is possible not only on a flexible surface-exposed loop, but also within a deep active site pocket at the conserved DFG motif, which reveals the potential use of this method in exploring enzyme function through modification of catalytic site residues.
机译:当研究诸如翻译后修饰(PTM)等改变的影响时,获得蛋白质均质样品的能力非常宝贵。可以通过化学修饰半胱氨酸残基来实现蛋白质对PTM对其结构或活性的影响的选择性功能化。我们在这里证明了一种这样的技术,其中涉及将半胱氨酸转化为脱氢丙氨酸,然后添加硫醇亲核试剂,该技术适用于各种PTM化学模拟物的位点特定安装,包括乙酰化和二甲基化的赖氨酸,以及其他非天然氨基酸。这些反应针对临床相关激酶Aurora-A进行了优化,如完整蛋白质质谱法所揭示的,它们很容易进行至完成。而且,这些反应在非变性条件下进行,这在处理大型蛋白质底物时是合乎需要的。我们已经确定了Aurora-A上两个不同位点上不同范围的巯基亲核试剂加成反应的反应趋势,并且当使用含有基本官能团的巯基亲核试剂时,我们也强调了局限性。我们表明,半胱氨酸残基的化学修饰不仅可能在柔性表面暴露的环上发生,而且在保守的DFG图案的深层活性位点内也可能发生,这表明该方法可通过修饰催化作用来探索酶的功能现场残留物。

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