Bi Xiaobao, Pasunooti Kalyan Kumar, Lescar Julien, Liu Chuan-Fa
School of Biological Sciences, Nanyang Technological University , 60 Nanyang Drive, 637551, Singapore.
Bioconjug Chem. 2017 Feb 15;28(2):325-329. doi: 10.1021/acs.bioconjchem.6b00667. Epub 2016 Dec 27.
α-Oxo aldehyde-based bioconjugation chemistry has been widely explored in peptide and protein modifications for various applications in biomedical research during the past decades. The generation of α-oxo aldehyde via sodium periodate oxidation is usually limited to the N-terminus of a target protein. Internal-site functionalization of proteins with the α-oxo aldehyde handle has not been achieved yet. Herein we report a novel method for site-specific peptide and protein modification using synthetically or genetically incorporated thiazolidine-protected α-oxo aldehyde. Efficient unmasking of the aldehyde was achieved by silver ion-mediated hydrolysis of thiazolidine under mild conditions for the first time. A model peptide and a recombinant protein were used to demonstrate the utility of this new method, which were site-specifically modified by oxime ligation with an oxyamine-functionalized peptide labeling reagent. Therefore, our current method has enriched the α-oxo aldehyde synthetic tool box in peptide and protein bioconjugation chemistry and holds great potential to be explored in novel applications in the future.
在过去几十年中,基于α-氧代醛的生物共轭化学在肽和蛋白质修饰中得到了广泛探索,用于生物医学研究的各种应用。通过高碘酸钠氧化生成α-氧代醛通常仅限于目标蛋白质的N端。尚未实现用α-氧代醛处理对蛋白质进行内部位点功能化。在此,我们报告了一种使用合成或基因掺入的噻唑烷保护的α-氧代醛进行位点特异性肽和蛋白质修饰的新方法。首次在温和条件下通过银离子介导的噻唑烷水解实现了醛的有效去保护。使用模型肽和重组蛋白证明了这种新方法的实用性,该方法通过与氧胺功能化的肽标记试剂进行肟连接进行位点特异性修饰。因此,我们目前的方法丰富了肽和蛋白质生物共轭化学中的α-氧代醛合成工具箱,并在未来的新应用中具有巨大的探索潜力。