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钟形钟虫收缩性的柄长度依赖性。

Stalk-length-dependence of the contractility of Vorticella convallaria.

作者信息

Chung Eun Gul, Ryu Sangjin

机构信息

Department of Physics, University of Nebraska-Lincoln, Lincoln, NE, United States of America.

出版信息

Phys Biol. 2017 Nov 16;14(6):066002. doi: 10.1088/1478-3975/aa89b8.

Abstract

Vorticella convallaria is a sessile protozoan of which the spasmoneme contracts on a millisecond timescale. Because this contraction is induced and powered by the binding of calcium ions (Ca), the spasmoneme showcases Ca-powered cellular motility. Because the isometric tension of V. convallaria increases linearly with its stalk length, it is hypothesized that the contractility of V. convallaria during unhindered contraction depends on the stalk length. In this study, the contractile force and energetics of V. convallaria cells of different stalk lengths were evaluated using a fluid dynamic drag model which accounts for the unsteadiness and finite Reynolds number of the water flow caused by contracting V. convallaria and the wall effect of the no-slip substrate. It was found that the contraction displacement, peak contraction speed, peak contractile force, total mechanical work, and peak power depended on the stalk length. The observed stalk-length-dependencies were simulated using a damped spring model, and the model estimated that the average spring constant of the contracting stalk was 1.34 nN µm. These observed length-dependencies of Vorticella's key contractility parameters reflect the biophysical mechanism of the spasmonemal contraction, and thus they should be considered in developing a theoretical model of the Vorticella spasmoneme.

摘要

钟形钟虫是一种固着性原生动物,其肌动蛋白纤维在毫秒时间尺度上收缩。由于这种收缩是由钙离子(Ca)的结合诱导并提供动力的,肌动蛋白纤维展示了钙离子驱动的细胞运动。由于钟形钟虫的等长张力随其柄的长度线性增加,因此推测钟形钟虫在无阻碍收缩期间的收缩性取决于柄的长度。在本研究中,使用流体动力学阻力模型评估了不同柄长的钟形钟虫细胞的收缩力和能量学,该模型考虑了由收缩的钟形钟虫引起的水流的非稳定性和有限雷诺数以及无滑移基质的壁效应。研究发现,收缩位移、峰值收缩速度、峰值收缩力、总机械功和峰值功率取决于柄的长度。使用阻尼弹簧模型模拟了观察到的柄长依赖性,该模型估计收缩柄的平均弹簧常数为1.34 nN/µm。钟形钟虫关键收缩参数的这些观察到的长度依赖性反映了肌动蛋白纤维收缩的生物物理机制,因此在开发钟形钟虫肌动蛋白纤维的理论模型时应予以考虑。

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