O'Meara Timothy R, Palanski Brad A, Chen Maggie, Qiao Yingfeng, Cole Philip A
Division of Genetics, Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts, USA; Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts, USA.
Department of Pharmacology and Molecular Sciences, Johns Hopkins School of Medicine, Baltimore, Maryland, USA.
J Biol Chem. 2025 Apr;301(4):108417. doi: 10.1016/j.jbc.2025.108417. Epub 2025 Mar 18.
Chemical rescue is a technique for restoring the activity and/or structure of an engineered or naturally occurring (e.g., disease-associated) mutant protein by the introduction of a "molecular crutch" that abrogates the mutation's effect. This method was developed about 4 decades ago to facilitate mechanistic analysis of enzymes. Since then, a variety of purified proteins inactivated by site-directed mutagenesis have been successfully rescued by substrate moieties or exogenous small molecules, an approach that has continued to serve as an important tool for mechanistic enzymologists. More recently, chemical rescue has been applied to activate engineered proteins in intact biological systems for phenotypic and pathway-level analyses. There is growing interest in therapeutic applications of chemical rescue to correct protein mutations that give rise to human diseases. In this review, we first contextualize chemical rescue and discuss its utility in protein mechanistic analysis. Second, we review the advantages and caveats associated with using this approach to study protein function within biological settings. Third, we provide an overview of efforts to develop folding correctors that restore the proper function of disease-associated protein mutants. To conclude, future directions and challenges for the chemical rescue field are discussed.
化学拯救是一种通过引入消除突变影响的“分子拐杖”来恢复工程化或天然存在的(如与疾病相关的)突变蛋白活性和/或结构的技术。该方法大约在40年前被开发出来,用于促进酶的机制分析。从那时起,各种通过定点诱变失活的纯化蛋白已被底物部分或外源性小分子成功拯救,这种方法一直是机制酶学家的重要工具。最近,化学拯救已被应用于在完整的生物系统中激活工程蛋白,以进行表型和途径水平的分析。人们对化学拯救在纠正导致人类疾病的蛋白突变方面的治疗应用兴趣日益浓厚。在这篇综述中,我们首先介绍化学拯救的背景,并讨论其在蛋白质机制分析中的效用。其次,我们回顾了在生物环境中使用这种方法研究蛋白质功能的优点和注意事项。第三,我们概述了开发折叠校正剂以恢复与疾病相关的蛋白质突变体正常功能的努力。最后,讨论了化学拯救领域的未来方向和挑战。