Laboratory of Cellular Dynamics, Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.
PLoS One. 2011;6(8):e23338. doi: 10.1371/journal.pone.0023338. Epub 2011 Aug 8.
We assessed the intracellular association states of the Parkinson's disease related protein α-synuclein (AS) in living cells by transfection with a functional recombinant mutant protein (AS-C4) bearing a tetracysteine tag binding the fluorogenic biarsenical ligands FlAsH and ReAsH, The aggregation states of AS-C4 were assessed by in situ microscopy of molecular translational mobility with FRAP (fluorescence recovery after photobleaching) and of local molecular density with confocal fluorescence anisotropy (CFA). FRAP recovery was quantitative and rapid in regions of free protein, whereas AS in larger aggregates was>80% immobile. A small 16% recovery characterized by an apparent diffusion constant of 0.03-0.04 µm(2)/s was attributed to the dynamics of smaller, associated forms of AS-C4 and the exchange of mobile species with the larger immobile aggregates. By CFA, the larger aggregates exhibited high brightness and very low anisotropy, consistent with homoFRET between closely packed AS, for which a Förster distance (R(o)) of 5.3 nm was calculated. Other bright regions had high anisotropy values, close to that of monomeric AS, and indicative of membrane-associated protein with both low mobility and low degree of association. The anisotropy-fluorescence intensity correlations also revealed regions of free protein or of small aggregates, undetectable by conventional fluorescence imaging alone. The combined strategy (FRAP+CFA) provides a highly sensitive means for elucidating both the dynamics and structural features of protein aggregates and other intracellular complexes in living cells, and can be extended to other amyloid systems and to drug screening protocols.
我们通过转染具有四半胱氨酸标签的功能重组突变蛋白(AS-C4)来评估帕金森病相关蛋白 α-突触核蛋白(AS)在活细胞中的细胞内缔合状态,该蛋白带有可结合荧光双砷化物配体 FlAsH 和 ReAsH 的四半胱氨酸标签。通过 FRAP(光漂白后荧光恢复)对 AS-C4 的分子翻译流动性进行原位显微镜评估,以及通过共聚焦荧光各向异性(CFA)对局部分子密度进行评估,来评估 AS-C4 的聚集状态。在游离蛋白区域,FRAP 恢复是定量且快速的,而较大聚集体中的 AS 则>80%不移动。以 0.03-0.04 µm(2)/s 的表观扩散常数为特征的小 16%恢复归因于 AS-C4 的较小缔合形式的动力学和与较大不移动聚集体交换的可移动物质。通过 CFA,较大的聚集体表现出高亮度和非常低的各向异性,与紧密堆积的 AS 之间的同型 FRET 一致,由此计算出Förster 距离(R(o))为 5.3nm。其他亮区具有接近单体 AS 的高各向异性值,表明与膜相关的蛋白质具有低流动性和低缔合度。各向异性-荧光强度相关性还揭示了可移动蛋白质或小聚集体的区域,仅通过常规荧光成像无法检测到这些区域。该联合策略(FRAP+CFA)为阐明活细胞中蛋白质聚集体和其他细胞内复合物的动力学和结构特征提供了一种高度敏感的方法,并且可以扩展到其他淀粉样系统和药物筛选方案。