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首页> 外文期刊>Chemistry: A European journal >Palladium-Assisted Cleavage of Peptides and Proteins Containing a Backbone with Thiazolidine Linkage
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Palladium-Assisted Cleavage of Peptides and Proteins Containing a Backbone with Thiazolidine Linkage

机译:钯辅助裂解含噻唑烷键的主链肽和蛋白质

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The design and synthesis of biomolecules that are responsive to external stimuli is of great interest in various research areas, such as in the preparation of smart biomaterial and chemical biology. Polypeptide backbone disassembly as a response to a particular stimulus is of interest, as it leads to a complete loss of the protein tertiary structure and, as a result, to a loss of function. In this study, a strategy based on palladium-assisted efficient cleavage of backbone thiazolidine linkage in peptides and proteins was developed. Using a fluorescence-based assay, encompassing ubiquitinated peptide with a quenching florescence pair, it was possible to optimize the cleavage step after rapid screening of various conditions, such as the type of metal complexes and reaction additives. The optimized conditions prompted fast cleavage of the thiazolidine linkage. The straightforward introduction of a backbone thiazolidine linkage in peptide and proteins coupled with the chemical methods used offers new opportunities in controlling macromolecule function and might, with the aid of cellular protein delivery methods, be applied in cellular settings.
机译:响应于外部刺激的生物分子的设计和合成在各个研究领域中都引起了极大的兴趣,例如在制备智能生物材料和化学生物学中。作为对特定刺激的响应的多肽主链的分解是令人感兴趣的,因为它导致蛋白质三级结构的完全丧失,并因此导致功能丧失。在这项研究中,开发了一种基于钯辅助有效裂解肽和蛋白质中主链噻唑烷键的策略。使用基于荧光的分析方法,该方法包括泛素化肽和淬灭荧光对,可以在快速筛选各种条件(例如金属络合物和反应添加剂的类型)后优化裂解步骤。优化的条件促使噻唑烷键快速断裂。在肽和蛋白质中直接引入主链噻唑烷键,再加上所使用的化学方法,为控制大分子功能提供了新的机会,并可能借助细胞蛋白递送方法应用于细胞环境。

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