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Characterization of Cytoplasmic Gag-Gag Interactions by Dual-Color Z-Scan Fluorescence Fluctuation Spectroscopy

机译:用双色Z扫描荧光波动光谱表征细胞质Gag-Gag相互作用

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摘要

Fluorescence fluctuation spectroscopy (FFS) quantifies the interactions of fluorescently-labeled proteins inside living cells by brightness analysis. However, the study of cytoplasmic proteins that interact with the plasma membrane is challenging with FFS. If the cytoplasmic section is thinner than the axial size of the observation volume, cytoplasmic and membrane-bound proteins are coexcited, which leads to brightness artifacts. This brightness bias, if not recognized, leads to erroneous interpretation of the data. We have overcome this challenge by introducing dual-color z-scan FFS and the addition of a distinctly colored reference protein. Here, we apply this technique to study the cytoplasmic interactions of the Gag proteins from human immunodeficiency virus type 1 (HIV-1) and human T-lymphotropic virus type 1 (HTLV-1). The Gag protein plays a crucial role in the assembly of retroviruses and is found in both membrane and cytoplasm. Dual-color z-scans demonstrate that brightness artifacts are caused by a dim nonpunctate membrane-bound fraction of Gag. We perform an unbiased brightness characterization of cytoplasmic Gag by avoiding the membrane-bound fraction and reveal previously unknown differences in the behavior of the two retroviral Gag species. HIV-1 Gag exhibits concentration-dependent oligomerization in the cytoplasm, whereas HTLV-1 Gag lacks significant cytoplasmic Gag-Gag interactions.
机译:荧光波动光谱(FFS)通过亮度分析来量化活细胞内荧光标记的蛋白质的相互作用。然而,FFS挑战与质膜相互作用的细胞质蛋白。如果细胞质部分比观察体积的轴向尺寸薄,则细胞质和膜结合蛋白会被共同激发,从而导致亮度伪影。如果不识别这种亮度偏差,将导致对数据的错误解释。我们通过引入双色z扫描FFS和添加明显着色的参考蛋白克服了这一挑战。在这里,我们应用这项技术来研究人类免疫缺陷病毒1型(HIV-1)和人类T淋巴病毒1型(HTLV-1)的Gag蛋白的细胞质相互作用。 Gag蛋白在逆转录病毒的组装中起着至关重要的作用,并且在膜和细胞质中都可以发现。双色z扫描表明亮度伪影是由Gag的暗点状薄膜结合部分引起的。我们通过避免膜结合部分,进行了细胞质Gag的无偏亮度表征,并揭示了两个逆转录病毒Gag物种行为的先前未知差异。 HIV-1 Gag在细胞质中表现出浓度依赖性寡聚,而HTLV-1 Gag缺乏显着的细胞质Gag-Gag相互作用。

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