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用于反应发现的蛋白质底物:硼酸试剂的位点选择性修饰。

Protein Substrates for Reaction Discovery: Site-Selective Modification with Boronic Acid Reagents.

机构信息

Department of Chemistry , Rice University , Houston , Texas 77005 , United States.

出版信息

Acc Chem Res. 2019 Mar 19;52(3):566-575. doi: 10.1021/acs.accounts.8b00626. Epub 2019 Mar 1.

Abstract

Chemical modification of natural proteins must navigate difficult selectivity questions in a complex polyfunctional aqueous environment, within a narrow window of acceptable conditions. Limits on solvent mixtures, pH, and temperature create challenges for most synthetic methods. While a protein's complex polyfunctional environment undoubtedly creates challenges for traditional reactions, we wondered if it also might create opportunities for pursuing new bioconjugation reactivity directly on protein substrates. This Account describes our efforts to date to discover and develop new and useful reactivity for protein modification by starting from an open-ended screen of potential transition-metal catalysts for boronic acid reactivity with a model protein substrate. By starting from a broad screen, we were hoping to take advantage of the very many potential reactive sites on even a small model protein. And perhaps more importantly, whole proteins as reaction screening substrates might exhibit uniquely reactive local environments, the results of a dense combination of functional groups that would be nearly impossible to mimic in a small-molecule context. This effort has resulted in the discovery of four new protein modification reactions with boronic acid reagents, including a remarkable modification of specific backbone N-H bonds. This histidine-directed Chan-Lam coupling, based on specific proximity of an imidazole and two amide groups, is one important example of powerful reactivity that depends on a combination of functional groups that proteins make possible. Other bioconjugation reactions uncovered include a three-component tyrosine metalation with rhodium(III), a nickel-catalyzed cysteine arylation, and an unusual ascorbate-mediated oxidative process for N-terminal modification. The remarkably broad scope of reactivity types encountered in this work is a testament to the breadth of boronic acid reactivity. It is also a demonstration of the diverse reactivities that are possible by the combined alteration of boronic acid structure and metal promoter. The discovery of specific backbone modification chemistry has been a broadly empowering reactivity. Pyroglutamate, a naturally occurring posttranslational modification, exhibits remarkably high reactivity in histidine-directed backbone modification, which allows us to treat pyroglutamate as a reactive bioorthogonal handle that is readily incorporated into proteins of interest by natural machinery. In another research direction, the development of a vinylogous photocleavage system has allowed us to view backbone modification as a photocaging modification which is released by exposure to light.

摘要

在复杂的多功能水相环境中,天然蛋白质的化学修饰必须在可接受条件的狭窄窗口内解决困难的选择性问题。溶剂混合物、pH 值和温度的限制给大多数合成方法带来了挑战。虽然蛋白质复杂的多功能环境无疑给传统反应带来了挑战,但我们想知道它是否也可能为在蛋白质底物上直接探索新的生物共轭反应创造机会。本账户描述了我们迄今为止的努力,通过从模型蛋白质底物的潜在过渡金属催化剂的开放式筛选开始,发现并开发用于蛋白质修饰的新的有用反应性。通过从广泛的筛选开始,我们希望利用即使是小模型蛋白质上的许多潜在反应性位点。也许更重要的是,整个蛋白质作为反应筛选底物可能表现出独特的反应性局部环境,这是功能基团密集组合的结果,在小分子环境中几乎不可能模拟。这项工作导致了与硼酸试剂的四种新的蛋白质修饰反应的发现,包括对特定骨架 N-H 键的显著修饰。这种基于咪唑和两个酰胺基团的特定接近性的组氨酸定向 Chan-Lam 偶联是一种重要的反应性实例,这种反应性依赖于蛋白质可能产生的功能基团的组合。其他发现的生物偶联反应包括铑(III)的酪氨酸三元金属化、镍催化的半胱氨酸芳基化以及用于 N 端修饰的不寻常抗坏血酸介导的氧化过程。在这项工作中遇到的反应类型的范围非常广泛,证明了硼酸反应的广泛程度。这也证明了通过硼酸结构和金属促进剂的组合改变可以实现的不同反应性。特定骨架修饰化学的发现是一种广泛的赋能反应性。焦谷氨酸是一种天然的翻译后修饰,在组氨酸定向骨架修饰中表现出极高的反应性,这使我们能够将焦谷氨酸视为一种反应性生物正交接头,通过天然机制很容易将其掺入感兴趣的蛋白质中。在另一个研究方向中,开发出一种乙烯基光裂解系统使我们能够将骨架修饰视为光解笼蔽修饰,通过暴露于光来释放。

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