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通过靶向荧光团激活蛋白在亚细胞区室中实现快速、特异性、免洗、远红荧光团激活

Rapid, specific, no-wash, far-red fluorogen activation in subcellular compartments by targeted fluorogen activating proteins.

作者信息

Telmer Cheryl A, Verma Richa, Teng Haibing, Andreko Susan, Law Leann, Bruchez Marcel P

机构信息

Molecular Biosensor and Imaging Center, Carnegie Mellon University, Mellon Institute, 4400 Fifth Avenue, Pittsburgh, Pennsylvania 15213, United States.

出版信息

ACS Chem Biol. 2015 May 15;10(5):1239-46. doi: 10.1021/cb500957k. Epub 2015 Feb 16.

Abstract

Live cell imaging requires bright photostable dyes that can target intracellular organelles and proteins with high specificity in a no-wash protocol. Organic dyes possess the desired photochemical properties and can be covalently linked to various protein tags. The currently available fluorogenic dyes are in the green/yellow range where there is high cellular autofluorescence and the near-infrared (NIR) dyes need to be washed out. Protein-mediated activation of far-red fluorogenic dyes has the potential to address these challenges because the cell-permeant dye is small and nonfluorescent until bound to its activating protein, and this binding is rapid. In this study, three single chain variable fragment (scFv)-derived fluorogen activating proteins (FAPs), which activate far-red emitting fluorogens, were evaluated for targeting, brightness, and photostability in the cytosol, nucleus, mitochondria, peroxisomes, and endoplasmic reticulum with a cell-permeant malachite green analog in cultured mammalian cells. Efficient labeling was achieved within 20-30 min for each protein upon the addition of nM concentrations of dye, producing a signal that colocalized significantly with a linked mCerulean3 (mCer3) fluorescent protein and organelle specific dyes but showed divergent photostability and brightness properties dependent on the FAP. These FAPs and the ester of malachite green dye (MGe) can be used as specific, rapid, and wash-free labels for intracellular sites in live cells with far-red excitation and emission properties, useful in a variety of multicolor experiments.

摘要

活细胞成像需要明亮的光稳定染料,这些染料能够在无需洗涤的实验方案中以高特异性靶向细胞内细胞器和蛋白质。有机染料具有所需的光化学性质,并且可以与各种蛋白质标签共价连接。目前可用的荧光染料处于绿色/黄色范围内,细胞自身荧光较高,而近红外(NIR)染料需要洗脱。蛋白质介导的远红荧光染料激活有潜力应对这些挑战,因为细胞渗透性染料在与激活蛋白结合之前体积小且无荧光,并且这种结合很快。在本研究中,使用一种细胞渗透性孔雀石绿类似物,在培养的哺乳动物细胞中评估了三种激活远红发射荧光团的单链可变片段(scFv)衍生的荧光团激活蛋白(FAP)在细胞质、细胞核、线粒体、过氧化物酶体和内质网中的靶向性、亮度和光稳定性。加入纳摩尔浓度的染料后,每种蛋白质在20 - 30分钟内实现了高效标记,产生的信号与连接的mCerulean3(mCer3)荧光蛋白和细胞器特异性染料显著共定位,但根据FAP的不同,光稳定性和亮度特性有所差异。这些FAP和孔雀石绿染料酯(MGe)可用作具有远红激发和发射特性的活细胞内特定部位的特异性、快速且无需洗涤的标记物,可用于各种多色实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fec/4867890/b509b0f6e060/cb-2014-00957k_0001.jpg

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