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由肌动蛋白聚合驱动的细胞运动。

Cell motility driven by actin polymerization.

作者信息

Mogilner A, Oster G

机构信息

Department of Mathematics, University of California, Davis 95616, USA.

出版信息

Biophys J. 1996 Dec;71(6):3030-45. doi: 10.1016/S0006-3495(96)79496-1.

Abstract

Certain kinds of cellular movements are apparently driven by actin polymerization. Examples include the lamellipodia of spreading and migrating embryonic cells, and the bacterium Listeria monocytogenes, that propels itself through its host's cytoplasm by constructing behind it a polymerized tail of cross-linked actin filaments. Peskin et al. (1993) formulated a model to explain how a polymerizing filament could rectify the Brownian motion of an object so as to produce unidirectional force (Peskin, C., G. Odell, and G. Oster. 1993. Cellular motions and thermal fluctuations: the Brownian ratchet. Biophys. J. 65:316-324). Their "Brownian ratchet" model assumed that the filament was stiff and that thermal fluctuations affected only the "load," i.e., the object being pushed. However, under many conditions of biological interest, the thermal fluctuations of the load are insufficient to produce the observed motions. Here we shall show that the thermal motions of the polymerizing filaments can produce a directed force. This "elastic Brownian ratchet" can explain quantitatively the propulsion of Listeria and the protrusive mechanics of lamellipodia. The model also explains how the polymerization process nucleates the orthogonal structure of the actin network in lamellipodia.

摘要

某些类型的细胞运动显然是由肌动蛋白聚合作用驱动的。例子包括正在铺展和迁移的胚胎细胞的片状伪足,以及单核细胞增生李斯特菌,该细菌通过在其身后构建由交联肌动蛋白丝组成的聚合尾而在宿主细胞质中自行推进。佩斯金等人(1993年)构建了一个模型来解释聚合细丝如何校正物体的布朗运动从而产生单向力(佩斯金,C.,G.奥德尔,和G.奥斯特。1993年。细胞运动和热涨落:布朗棘轮。生物物理学杂志。65:316 - 324)。他们的“布朗棘轮”模型假定细丝是刚性的,并且热涨落仅影响“负载”,即被推动的物体。然而,在许多生物学相关的条件下,负载的热涨落不足以产生所观察到的运动。在此我们将表明聚合细丝的热运动能够产生定向力。这种“弹性布朗棘轮”能够定量解释李斯特菌的推进以及片状伪足的突出机制。该模型还解释了聚合过程如何使片状伪足中肌动蛋白网络的正交结构成核。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0309/1233792/478892b038c9/biophysj00042-0122-a.jpg

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