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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Discovery of functional interactions among actin regulators by analysis of image fluctuations in an unperturbed motile cell system
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Discovery of functional interactions among actin regulators by analysis of image fluctuations in an unperturbed motile cell system

机译:通过分析不受干扰的动机系统的图像波动分析actin调节剂中功能相互作用的发现

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Cell migration is driven by propulsive forces derived from polymerizing actin that pushes and extends the plasma membrane. The underlying actin network is constantly undergoing adaptation to new mechano-chemical environments and intracellular conditions. As such, mechanisms that regulate actin dynamics inherently contain multiple feedback loops and redundant pathways. Given the highly adaptable nature of such a system, studies that use only perturbation experiments (e.g. knockdowns, overexpression, pharmacological activation/inhibition, etc.) are challenged by the nonlinearity and redundancy of the pathway. In these pathway configurations, perturbation experiments at best describe the function(s) of a molecular component in an adapting (e.g. acutely drug-treated) or fully adapted (e.g. permanent gene silenced) cell system, where the targeted component now resides in a non-native equilibrium. Here, we propose how quantitative live-cell imaging and analysis of constitutive fluctuations of molecular activities can overcome these limitations. We highlight emerging actin filament barbed-end biology as a prime example of a complex, nonlinear molecular process that requires a fluctuation analytic approach, especially in an unperturbed cellular system, to decipher functional interactions of barbed-end regulators, actin polymerization and membrane protrusion.
机译:通过衍生自聚合肌动蛋白的推进力来驱动细胞迁移,其推动和延伸等离子体膜。底层的肌动蛋白网络不断地对新的机械化学环境和细胞内条件进行适应。因此,调节肌动蛋白动态的机制固有地包含多个反馈回路和冗余路径。鉴于这种系统的高度适应性,仅使用扰动实验的研究(例如,敲低,过表达,药理活化/抑制等)受到途径的非线性和冗余的攻击。在这些途径配置中,最佳扰动实验在适应(例如急性药物处理)或完全适应的(例如永久性基因沉默)细胞系统中的分子组分的功能,其中目标部件现在存在于非 - 均衡。在这里,我们提出了定量的实际细胞成像和分析分子活性的组成型波动可以克服这些限制。我们突出显示出新兴的肌动蛋白长丝贴膜结束生物学作为一种复杂的非线性分子过程的主要例子,其需要波动分析方法,尤其是在不受干扰的细胞系统中,以破译骨折末端调节剂,肌动蛋白聚合和膜突起的功能相互作用。

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