Bosch Peter J, Corrêa Ivan R, Sonntag Michael H, Ibach Jenny, Brunsveld Luc, Kanger Johannes S, Subramaniam Vinod
Nanobiophysics, MESA+ Institute for Nanotechnology and MIRA Institute for Biomedical Technology and Technical Medicine, University of Twente, Enschede, The Netherlands.
New England Biolabs, Ipswich, Massachusetts.
Biophys J. 2014 Aug 19;107(4):803-14. doi: 10.1016/j.bpj.2014.06.040.
Single-molecule tracking has become a widely used technique for studying protein dynamics and their organization in the complex environment of the cell. In particular, the spatiotemporal distribution of membrane receptors is an active field of study due to its putative role in the regulation of signal transduction. The SNAP-tag is an intrinsically monovalent and highly specific genetic tag for attaching a fluorescent label to a protein of interest. Little information is currently available on the choice of optimal fluorescent dyes for single-molecule microscopy utilizing the SNAP-tag labeling system. We surveyed 6 green and 16 red excitable dyes for their suitability in single-molecule microscopy of SNAP-tag fusion proteins in live cells. We determined the nonspecific binding levels and photostability of these dye conjugates when bound to a SNAP-tag fused membrane protein in live cells. We found that only a limited subset of the dyes tested is suitable for single-molecule tracking microscopy. The results show that a careful choice of the dye to conjugate to the SNAP-substrate to label SNAP-tag fusion proteins is very important, as many dyes suffer from either rapid photobleaching or high nonspecific staining. These characteristics appear to be unpredictable, which motivated the need to perform the systematic survey presented here. We have developed a protocol for evaluating the best dyes, and for the conditions that we evaluated, we find that Dy 549 and CF 640 are the best choices tested for single-molecule tracking. Using an optimal dye pair, we also demonstrate the possibility of dual-color single-molecule imaging of SNAP-tag fusion proteins. This survey provides an overview of the photophysical and imaging properties of a range of SNAP-tag fluorescent substrates, enabling the selection of optimal dyes and conditions for single-molecule imaging of SNAP-tagged fusion proteins in eukaryotic cell lines.
单分子追踪已成为研究蛋白质动力学及其在细胞复杂环境中组织方式的一种广泛应用的技术。特别是,膜受体的时空分布因其在信号转导调节中的假定作用而成为一个活跃的研究领域。SNAP标签是一种内在单价且高度特异性的遗传标签,用于将荧光标记附着到感兴趣的蛋白质上。目前关于利用SNAP标签标记系统进行单分子显微镜成像时最佳荧光染料的选择,可用信息很少。我们调查了6种绿色和16种红色可激发染料在活细胞中对SNAP标签融合蛋白进行单分子显微镜成像的适用性。我们测定了这些染料缀合物在与活细胞中SNAP标签融合的膜蛋白结合时的非特异性结合水平和光稳定性。我们发现,所测试的染料中只有有限的一部分适用于单分子追踪显微镜成像。结果表明,仔细选择与SNAP底物缀合以标记SNAP标签融合蛋白的染料非常重要,因为许多染料存在快速光漂白或高非特异性染色的问题。这些特性似乎无法预测,这促使我们进行此处介绍的系统调查。我们开发了一种评估最佳染料的方案,对于我们评估的条件,我们发现Dy 549和CF 640是单分子追踪测试中最佳的选择。使用一对最佳染料,我们还展示了对SNAP标签融合蛋白进行双色单分子成像的可能性。这项调查概述了一系列SNAP标签荧光底物的光物理和成像特性,有助于为真核细胞系中SNAP标签融合蛋白的单分子成像选择最佳染料和条件。