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Specific and covalent labeling of a membrane protein with organic fluorochromes and quantum dots

机译:用有机荧光染料和量子点对膜蛋白进行特异性和共价标记

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摘要

The real-time observation of protein dynamics in living cells and organisms is of fundamental importance for understanding biological processes. Most approaches to labeling proteins exploit noncovalent interactions, unsuitable to long-term studies, or genetic fusion to naturally occurring fluorescent proteins that often have unsatisfactory optical properties. Here we used the fungal enzyme cutinase and its suicide substrate p-nitrophenyl phospho-nate to covalently attach a variety of labels to the integrin lymphocyte function-associated antigen-1 (LFA-1) on the surface of living cells. Cutinase was embedded in the extracellular domain of LFA-1 with no appreciable influence on integrin function and conformational regulation. p-nitrophenyl phosphonate-conjugated fluorochromes, including the very bright and stable quantum dots, bound efficiently and specifically to LFA-1/cutinase. The availability of a genetically encoded tag that binds covalently to quantum dots could foster the development of new experimental strategies for the study of protein dynamics in vivo.
机译:实时观察活细胞和生物中蛋白质动力学的动态对于理解生物学过程至关重要。大多数标记蛋白质的方法都是利用非共价相互作用,不适用于长期研究,或者是与通常不具有令人满意的光学特性的天然荧光蛋白进行基因融合。在这里,我们使用了真菌角质酶及其自杀底物对硝基苯基膦酸酯,将多种标记物共价附于活细胞表面上的整合素淋巴细胞功能相关抗原-1(LFA-1)。角质酶嵌入LFA-1的胞外域,对整联蛋白功能和构象调控没有明显影响。对硝基苯基膦酸酯共轭的荧光染料,包括非常明亮和稳定的量子点,可以有效且特异性地与LFA-1 /角质酶结合。与量子点共价结合的遗传编码标签的可用性可以促进体内蛋白质动力学研究的新实验策略的发展。

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