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Computational design of a red fluorophore ligase for site-specific protein labeling in living cells

机译:用于活细胞中位点特异性蛋白标记的红色荧光团连接酶的计算设计

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摘要

Chemical fluorophores offer tremendous size and photophysical advantages over fluorescent proteins but are much more challenging to target to specific cellular proteins. Here, we used Rosetta-based computation to design a fluorophore ligase that accepts the red dye resorufin, starting from Escherichia coli lipoic acid ligase. X-ray crystallography showed that the design closely matched the experimental structure. Resorufin ligase catalyzed the site-specific and covalent attachment of resorufin to various cellular proteins genetically fused to a 13-aa recognition peptide in multiple mammalian cell lines and in primary cultured neurons. We used resorufin ligase to perform superresolution imaging of the intermediate filament protein vimentin by stimulated emission depletion and electron microscopies. This work illustrates the power of Rosetta for major redesign of enzyme specificity and introduces a tool for minimally invasive, highly specific imaging of cellular proteins by both conventional and superresolution microscopies.
机译:化学荧光团比荧光蛋白具有巨大的尺寸和光物理优势,但靶向特定的细胞蛋白则更具挑战性。在这里,我们使用基于Rosetta的计算方法设计了一种荧光团连接酶,该荧光团连接酶从大肠杆菌硫辛酸连接酸开始,接受了红色的试卤灵。 X射线晶体学表明该设计与实验结构紧密匹配。试卤灵连接酶催化试卤灵与多种哺乳动物细胞系和原代培养的神经元中遗传融合至13-aa识别肽的各种细胞蛋白的位点特异性和共价结合。我们使用试卤灵连接酶通过受激发射损耗和电子显微镜对中间丝蛋白波形蛋白进行超分辨率成像。这项工作说明了Rosetta对酶特异性进行重大重新设计的能力,并介绍了一种通过常规和超分辨率显微镜对细胞蛋白进行微创,高特异性成像的工具。

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