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组装基于微管的活性物质。

Assembling Microtubule-Based Active Matter.

机构信息

Department of Physics, University of California, Santa Barbara, CA, USA.

Department of Physics, Brandeis University, Waltham, MA, USA.

出版信息

Methods Mol Biol. 2022;2430:151-183. doi: 10.1007/978-1-0716-1983-4_10.

Abstract

Studied for more than a century, equilibrium liquid crystals provided insight into the properties of ordered materials, and led to commonplace applications such as display technology. Active nematics are a new class of liquid crystal materials that are driven out of equilibrium by continuous motion of the constituent anisotropic units. A versatile experimental realization of active nematic liquid crystals is based on rod-like cytoskeletal filaments that are driven out of equilibrium by molecular motors. We describe protocols for assembling microtubule-kinesin based active nematic liquid crystals and associated isotropic fluids. We describe the purification of each protein and the assembly process of a two-dimensional active nematic on a water-oil interface. Finally, we show examples of nematic formation and describe methods for quantifying their non-equilibrium dynamics.

摘要

经过一个多世纪的研究,平衡液晶为我们深入了解有序物质的性质提供了线索,并催生了一些常见的应用,如显示技术。主动向列相液晶是一类新型的液晶材料,其各向异性单元的连续运动使其处于非平衡状态。基于由分子马达驱动的棒状细胞骨架纤维的主动向列相液晶的多功能实验实现,我们描述了组装微管-驱动蛋白的基于主动向列相液晶的实验方法及相关各向同性流体。我们描述了每种蛋白质的纯化过程和在油水界面上二维主动向列相的组装过程。最后,我们展示了向列相形成的实例,并描述了量化其非平衡动力学的方法。

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