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用于天然蛋白质无痕迹生物可逆修饰的化学选择性试剂。

Chemoselective Reagents for the Traceless Bioreversible Modification of Native Proteins.

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

Bioconjug Chem. 2024 Sep 18;35(9):1300-1308. doi: 10.1021/acs.bioconjchem.4c00338. Epub 2024 Aug 29.

Abstract

Nature utilizes bioreversible post-translational modifications (PTMs) to spatiotemporally diversify protein function. Mimicking Nature's approach, chemists have developed a variety of chemoselective regents for traceless, bioreversible modification of native proteins. These strategies have found utility in the development of reversible covalent inhibitors and degraders as well as the synthesis of functional protein conjugates for delivery into cells. This Viewpoint provides a snapshot of such tools, which currently cover Cys, Ser, Thr, Lys, Asp, and Glu residues and the N terminus. Additionally, we explore how bioreversible reagents, originally developed by research communities with differing objectives, can be utilized synergistically. Looking forward, we discuss the need for developing bioreversible reagents for labeling His, Tyr, Arg, Trp, Asn, Gln, and Met residues and the C-terminus as well as the installation of dynamic PTMs. Finally, to broaden the applicability of these tools, we point out the importance of developing modular release scaffolds with tunable release times and responsiveness to multiple endogenous triggers. We anticipate that this Viewpoint will catalyze further research and technological breakthroughs in this rapidly evolving field.

摘要

自然界利用生物可逆的翻译后修饰(PTMs)来在时空上多样化蛋白质的功能。为了模仿自然界的方法,化学家们开发了各种化学选择性试剂,用于无痕、生物可逆地修饰天然蛋白质。这些策略在可逆共价抑制剂和降解剂的开发以及用于递送到细胞内的功能性蛋白质缀合物的合成中找到了应用。本观点提供了这些工具的一个快照,这些工具目前涵盖 Cys、Ser、Thr、Lys、Asp 和 Glu 残基以及 N 末端。此外,我们还探讨了如何协同利用最初由具有不同目标的研究社区开发的生物可逆试剂。展望未来,我们讨论了开发用于标记 His、Tyr、Arg、Trp、Asn、Gln 和 Met 残基以及 C 末端以及安装动态 PTMs 的生物可逆试剂的必要性。最后,为了拓宽这些工具的适用性,我们指出开发具有可调释放时间和对多种内源性触发因素的响应能力的模块化释放支架的重要性。我们预计,本观点将促进该快速发展领域的进一步研究和技术突破。

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