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解离细胞质中的运动机制。

The mechanics of motility in dissociated cytoplasm.

作者信息

Dembo M

出版信息

Biophys J. 1986 Dec;50(6):1165-83. doi: 10.1016/S0006-3495(86)83560-3.

Abstract

We stimulate the dynamical behavior of dissociated cytoplasm using the Reactive Flow Model (Dembo, M., and F. Harlow, 1986, Biophys. J., 50:109-121). We find that for the most part the predicted dynamical behavior of the cytoplasm is governed by three nondimensional numbers. Several other nondimensional parameters, the initial conditions, and boundary conditions are found to have lesser effects. Of the three major nondimensional parameters, one (D#) controls the percentage of ectoplasm, the second (C#) controls the sharpness of the endoplasm-ectoplasm boundary, and the third (R#) controls the topological complexity of the endoplasm-ectoplasm distribution. If R# is very small, then the cytoplasm contracts into a single uniform mass, and there is no bulk streaming. If R# is very large, then the cytoplasmic mass breaks up into a number of clumps scattered throughout the available volume. Between these clumps the solution undergoes turbulent or chaotic patterns of streaming. Intermediate values of R# can be found such that the mass of cytoplasm remains connected and yet undergoes coherent modes of motility similar to flares (Taylor, D.L., J.S. Condeelis, P.L. Moore, and R.D. Allen, 1973, J. Cell Biol., 59:378-394) and rosettes (Kuroda, K., 1979, Cell Motility: Molecules and Organization, 347-362).

摘要

我们使用反应流模型(登博,M.,和F.哈洛,1986年,《生物物理学杂志》,50:109 - 121)来刺激解离细胞质的动力学行为。我们发现,在大多数情况下,细胞质预测的动力学行为由三个无量纲数控制。还发现其他几个无量纲参数、初始条件和边界条件的影响较小。在这三个主要无量纲参数中,一个(D#)控制外质的百分比,第二个(C#)控制内质 - 外质边界的锐度,第三个(R#)控制内质 - 外质分布的拓扑复杂性。如果R#非常小,那么细胞质会收缩成一个单一的均匀团块,并且没有整体流动。如果R#非常大,那么细胞质团块会分裂成许多散布在可用体积中的团块。在这些团块之间,溶液会经历湍流或混沌的流动模式。可以找到R#的中间值,使得细胞质团块保持连接,但仍会经历类似于耀斑(泰勒,D.L.,J.S.康德利斯,P.L.摩尔,和R.D.艾伦,1973年,《细胞生物学杂志》,59:378 - 394)和玫瑰花结(黑田,K.,1979年,《细胞运动:分子与组织》,347 - 362)的连贯运动模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bfe/1329790/1cff29bac469/biophysj00172-0141-a.jpg

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