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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Relationship between the nonlinear ferroelectric and liquid crystal models for microtubules - art. no. 011901
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Relationship between the nonlinear ferroelectric and liquid crystal models for microtubules - art. no. 011901

机译:微管的非线性铁电和液晶模型之间的关系-艺术没有。 011901

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Microtubules (MTs), which are the main components of the cytoskeleton, are important in a variety of cellular activities, but some physical properties underlying the most important features of their behavior are still lacking satisfactory explanation. One of the essential enigmas regarding the energy balance in MTs is the hydrolysis of the exchangable guanosine 5(')-triphosphate bound to the beta monomer of the molecule. The energy released in the hydrolysis process amounts to 6.25x10(-20) J and has been the subject of many attempts to answer the questions of its utilization. Earlier, we put forward a hypothesis that this energy can cause a local conformational distortion of the dimer. This distortion should have nonlinear character and could lead to the formation of a traveling kink soliton. In this paper we use the formalism of the liquid crystal theory to consider the nonlinear dynamics of MTs. We demonstrate that this new model is formally equivalent to our earlier ferroelectric model which was widely exploited in an attempt to elucidate some important dynamical activities in MTs. We also study the stability of kink solitons against small perturbations and their unusual mutual interactions as well as the interactions with structural inhomogenities of MTs. Our new approach based on liquid crystal properties of microtubules has been recently corroborated by new insights gained from the electrostatic properties of tubulin and microtubules. [References: 37]
机译:微管(MTs)是细胞骨架的主要组成部分,在多种细胞活动中都很重要,但是其行为最重要的特征所依据的某些物理性质仍缺乏令人满意的解释。关于MT中能量平衡的基本谜团之一是与分子的β单体结合的可交换鸟苷5(')-三磷酸酯的水解。水解过程中释放的能量达到6.25x10(-20)J,并且已经成为回答其利用问题的许多尝试的主题。早先,我们提出了一个假设,即这种能量会引起二聚体的局部构象变形。这种变形应具有非线性特征,并可能导致行进扭结孤子的形成。在本文中,我们使用液晶理论的形式主义来考虑MT的非线性动力学。我们证明了这个新模型在形式上等同于我们早先的铁电模型,后者被广泛利用以试图阐明MT中的一些重要的动力学活动。我们还研究了扭结孤子对小扰动的稳定性及其异常的相互作用以及与MT的结构不均匀性的相互作用。最近从微管蛋白和微管的静电特性获得的新见识证实了我们基于微管的液晶特性的新方法。 [参考:37]

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