首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Crowding-Induced Phase Separation of Lennard-Jones Particles: Implications to Nuclear Structures in a Biological Cell
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Crowding-Induced Phase Separation of Lennard-Jones Particles: Implications to Nuclear Structures in a Biological Cell

机译:Lennard-Jones粒子的拥挤诱导相分离:对生物细胞核结构的影响。

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We investigate the phase separation of Lennard-Jones (LJ) particles in the presence of cosolute crowders using molecular dynamics simulations. In the absence of crowders, LJ particles phase-separate and form liquid and vapor phases only when the attraction between LJ particles is strong enough such that k_BT/ε is less than 1.085, where e is the attraction strength of the LJ potential, k_B is the Boltzmann constant, and T is the temperature. On the other hand, the phase separation of LJ particles is observed even for larger k_BT/ε and thus for weaker attractions when volume exclusive, repulsive crowders are present. Although the impact of crowding becomes less significant as the attraction between crowders and LJ particles is increased, the phase separation observed from simulations containing both nonattractive and attractive crowders shows that the crowding-induced phase separation by nonattractive crowders is still very significant even in the presence of other attractive crowders. This occurs because not only LJ particles but also attractive crowders are subject to the excluded volume effect of nonattractivecrowders and found together in the condensed phase. This study suggests that the excluded volume effect in the crowded nuclear environment may play a crucial role in the formation and maintenance of biological structures in a cell, such as nuclear bodies including nucleoli and cajal bodies.
机译:我们使用分子动力学模拟研究在存在共挤流子的情况下Lennard-Jones(LJ)粒子的相分离。在没有拥挤的情况下,仅当LJ粒子之间的吸引力足够强,以致k_BT /ε小于1.085时,LJ粒子才发生相分离并形成液相和气相,其中e是LJ势的吸引力强度,k_B为玻尔兹曼常数,T是温度。另一方面,即使存在较大的k_BT /ε,也可以观察到LJ颗粒的相分离,因此当存在体积排他的排斥性拥挤物时,LJ颗粒的相吸引力也较弱。尽管随着拥挤物和LJ粒子之间吸引力的增加,拥挤的影响变得不那么重要了,但是从同时包含无吸引力和有吸引力的拥挤物的模拟中观察到的相分离表明,即使在有拥挤的情况下,由无吸引力的拥挤物引起的拥挤引起的相分离仍然非常重要其他有吸引力的拥挤者。发生这种情况的原因是,不仅LJ颗粒而且有吸引力的拥挤者都受到非吸引力拥挤者的排他体积效应的影响,并在凝结相中一起发现。这项研究表明,在拥挤的核环境中排除的体积效应可能在细胞的生物结构的形成和维持中起关键作用,例如核体,包括核仁和including虫体。

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