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均匀全内反射荧光照明实现活细胞荧光共振能量转移显微镜技术。

Uniform total internal reflection fluorescence illumination enables live cell fluorescence resonance energy transfer microscopy.

机构信息

Department of Chemistry and Biochemistry, South Dakota State University, Brookings, SD 57007, USA.

出版信息

Microsc Microanal. 2013 Apr;19(2):350-9. doi: 10.1017/S1431927612014420. Epub 2013 Mar 11.

Abstract

Fluorescence resonance energy transfer (FRET) microscopy is a powerful technique to quantify dynamic protein-protein interactions in live cells. Total internal reflection fluorescence (TIRF) microscopy can selectively excite molecules within about 150 nm of the glass-cell interface. Recently, these two approaches were combined to enable high-resolution FRET imaging on the adherent surface of living cells. Here, we show that interference fringing of the coherent laser excitation used in TIRF creates lateral heterogeneities that impair quantitative TIRF-FRET measurements. We overcome this limitation by using a two-dimensional scan head to rotate laser beams for donor and acceptor excitation around the back focal plane of a high numerical aperture objective. By setting different radii for the circles traced out by each laser in the back focal plane, the penetration depth was corrected for different wavelengths. These modifications quell spatial variations in illumination and permit calibration for quantitative TIRF-FRET microscopy. The capability of TIRF-FRET was demonstrated by imaging assembled cyan and yellow fluorescent protein-tagged HIV-Gag molecules in single virions on the surfaces of living cells. These interactions are shown to be distinct from crowding of HIV-Gag in lipid rafts.

摘要

荧光共振能量转移(FRET)显微镜是一种强大的技术,可定量测量活细胞中动态蛋白质-蛋白质相互作用。全内反射荧光(TIRF)显微镜可以选择性地激发玻璃-细胞界面内约 150nm 的分子。最近,这两种方法结合起来,可以在活细胞的贴附表面上进行高分辨率的 FRET 成像。在这里,我们表明,TIRF 中使用的相干激光激发的干涉条纹会产生横向不均匀性,从而影响定量 TIRF-FRET 测量。我们通过使用二维扫描头来解决这个限制,该扫描头可以围绕高数值孔径物镜的后焦平面旋转供体和受体的激光束。通过为后焦平面中每个激光所描绘的圆设置不同的半径,可以校正不同波长的穿透深度。这些修改消除了照明的空间变化,并允许进行定量 TIRF-FRET 显微镜的校准。通过在活细胞表面上对单个病毒粒子中组装的青色和黄色荧光蛋白标记的 HIV-Gag 分子进行成像,证明了 TIRF-FRET 的能力。这些相互作用与 HIV-Gag 在脂筏中的拥挤不同。

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