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Quantifying cadherin mechanotransduction machinery assembly/disassembly dynamics using fluorescence covariance analysis

机译:使用荧光协方差分析定量钙黏着蛋白机械转导机械的组装/拆卸动力学

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摘要

Quantifying multi-molecular complex assembly in specific cytoplasmic compartments is crucial to understand how cells use assembly/disassembly of these complexes to control function. Currently, biophysical methods like Fluorescence Resonance Energy Transfer and Fluorescence Correlation Spectroscopy provide quantitative measurements of direct protein-protein interactions, while traditional biochemical approaches such as sub-cellular fractionation and immunoprecipitation remain the main approaches used to study multi-protein complex assembly/disassembly dynamics. In this article, we validate and quantify multi-protein adherens junction complex assembly in situ using light microscopy and Fluorescence Covariance Analysis. Utilizing specific fluorescently-labeled protein pairs, we quantified various stages of adherens junction complex assembly, the multiprotein complex regulating epithelial tissue structure and function following de novo cell-cell contact. We demonstrate: minimal cadherin-catenin complex assembly in the perinuclear cytoplasm and subsequent localization to the cell-cell contact zone, assembly of adherens junction complexes, acto-myosin tension-mediated anchoring, and adherens junction maturation following de novo cell-cell contact. Finally applying Fluorescence Covariance Analysis in live cells expressing fluorescently tagged adherens junction complex proteins, we also quantified adherens junction complex assembly dynamics during epithelial monolayer formation.
机译:量化特定细胞质区室中的多分子复合物装配对于了解细胞如何使用这些复合物的装配/分解来控制功能至关重要。当前,诸如荧光共振能量转移和荧光相关光谱法的生物物理方法提供了直接蛋白质-蛋白质相互作用的定量测量,而传统的生化方法(如亚细胞分级分离和免疫沉淀)仍然是研究多蛋白质复合物组装/拆卸动力学的主要方法。 。在本文中,我们使用光学显微镜和荧光协方差分析对原位多蛋白粘附连接复合体进行验证和定量。利用特定的荧光标记蛋白对,我们量化了从头细胞与细胞接触后粘附连接复合物装配,调节上皮组织结构和功能的多蛋白复合物的各个阶段。我们证明:在核周细胞质中最小的钙粘蛋白-连环蛋白复合物组装和随后定位到细胞-细胞接触区,粘附连接复合物组装,肌动蛋白张力介导的锚定和从头细胞-细胞接触后粘附连接成熟。最后,在表达荧光标记的粘附连接复合物蛋白的活细胞中应用荧光协方差分析,我们还量化了上皮单层形成过程中粘附连接复合物组装的动力学。

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