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Phase transitions and molecular motion in the cell.

机译:细胞中的相变和分子运动。

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The cytoplasm exhibits all of the signature characteristics of a gel. The thesis put forth here is that the cytoplasm's gel-like character is central to the generation of biological movement. In artificial gels, a common vehicle for generating movement is the polymer-gel phase-transition. By undergoing phase-transition, gels produce motion of both solvent and solutes. It is argued that cells do the same. Three examples are given: the secretory system, the muscle contraction system and the biological streaming system. In each case it is shown that the characteristic motions may be created as proteins and water undergo transition from an expanded, hydrated state to a contracted, dehydrated state--or the reverse. These changes shift solutes and solvent in a characteristic way that depends on the respective organelle's structure. Phase-transitions are simple, powerful mechanisms that may be responsible for many, if not all, biological motions.
机译:细胞质表现出凝胶的所有特征。这里提出的论点是,细胞质的凝胶状特性是生物运动产生的核心。在人造凝胶中,产生运动的常见媒介是聚合物-凝胶相变。通过进行相变,凝胶产生溶剂和溶质的运动。有人认为细胞也一样。给出了三个例子:分泌系统,肌肉收缩系统和生物流系统。在每种情况下,都表明随着蛋白质和水从膨胀的水合状态转变为收缩的脱水状态(或相反)而产生特征运动。这些变化以取决于各自细胞器结构的特征性方式移动溶质和溶剂。相变是简单而强大的机制,可能负责许多(如果不是全部)生物运动。

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