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A genetically encoded multifunctional unnatural amino acid for versatile protein manipulations in living cells

机译:基因编码的多功能非天然氨基酸,可在活细胞中进行多种蛋白质操作

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摘要

The genetic code expansion strategy allowed incorporation of unnatural amino acids (UAAs) bearing diverse functional groups into proteins, providing a powerful toolkit for protein manipulation in living cells. We report a multifunctional UAA, N-epsilon-p-azidobenzyloxycarbonyl lysine (PABK), that possesses a panel of unique properties capable of fulfilling various protein manipulation purposes. In addition to being used as a bioorthogonal ligation handle, an infrared probe and a photo-affinity reagent, PABK was shown to be chemically decaged by trans-cyclooctenols via a strain-promoted 1,3-dipolar cycloaddition, which provides a new bioorthogonal cleavage strategy for intracellular protein activation. The biocompatibility and efficiency of this method were demonstrated by decaging of a PABK-caged firefly luciferase under living conditions. We further extended this method to chemically rescue a bacterial toxin OspF inside mammalian host cells.
机译:遗传密码扩展策略允许将带有不同功能基团的非天然氨基酸(UAA)掺入蛋白质中,从而为在活细胞中进行蛋白质操作提供了强大的工具包。我们报告了多功能UAA,N-ε-对叠氮基苄氧基羰基赖氨酸(PABK),它具有一组能够满足各种蛋白质操作目的的独特特性。除了用作生物正交的连接手柄,红外探针和光亲和试剂外,PABK还被反式环辛烯醇通过应变促进的1,3-偶极环加成反应进行了化学降解,这提供了新的生物正交裂解细胞内蛋白质激活的策略。该方法的生物相容性和效率通过在生活条件下降低PABK笼养萤火虫荧光素酶的量来证明。我们进一步扩展了此方法,以化学方法拯救哺乳动物宿主细胞内的细菌毒素OspF。

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