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Global Amine and Acid Functional Group Modification of Proteins

机译:蛋白质的整体胺和酸官能团修饰

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A sequential reaction methodology is employed for the complete derivatization of protein thiols, amines, and acids in high purity under denaturing conditions. Following standard thiol alkylation, protein amines are modified via reductive methylation with formaldehyde and pyridine-borane. Protein acids are subsequently amidated under buffered conditions in DMSO using the coupling reagent (7-azabenzotriazol-1-yloxy)tripyrrolidinophosphonium hexafluorophosphate. The generality of the approach is demonstrated with four proteins and with several amines yielding near-quantitative transformations as characterized by high-resolution Fourier transform mass spectrometry. The developed approach has numerous implications for protein characterization and general protein chemistry. Applications in mass spectrometry (MS) based proteomics of intact proteins (top-down MS) are explored, including the addition of stable isotopes for relative quantitation and protein identification through functional group counting. The methodology can be used for altering the physical and chemical properties of proteins, as demonstrated with amidation to modify protein isoelectric point and through derivatization with quaternary amines. Additionally, the chemistry has applications in the semisynthesis of monodisperse polymers based on protein scaffolds. We prepare proteins modified with azides and alkynes to enable further functionalization via copper(I)-catalyzed 1,3-dipolar Huisgen cycloaddition ("click") chemistry.
机译:采用顺序反应方法在变性条件下以高纯度完全衍生化蛋白质硫醇,胺和酸。在标准硫醇烷基化之后,蛋白胺通过甲醛和吡啶-硼烷的还原性甲基化进行修饰。随后使用偶联试剂(7-氮杂苯并三唑-1-基氧基)三吡咯烷基六氟磷酸phosph在DMSO中在缓冲条件下酰胺化蛋白质酸。该方法的通用性由四种蛋白质和几种胺产生,其高分辨率高分辨率傅立叶变换质谱表征,可产生接近定量的转化。所开发的方法对于蛋白质表征和一般蛋白质化学具有许多意义。探索了完整蛋白质基于蛋白质组学的蛋白质组学方法(自上而下的MS),包括添加稳定同位素用于相对定量和通过官能团计数进行蛋白质鉴定。该方法可用于改变蛋白质的物理和化学性质,如酰胺化修饰蛋白质的等电点并通过季胺衍生化所证明。另外,该化学方法还用于基于蛋白质支架的单分散聚合物的半合成中。我们准备用叠氮化物和炔烃修饰的蛋白质,以使其能够通过铜(I)催化的1,3-偶极Huisgen环加成(“ click”)化学反应进一步官能化。

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