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原生动物肉足虫类的细胞骨架结构与功能 2:海胆虫类快速轴足收缩力的测量。

Structure and function of the cytoskeleton in heliozoa: 2. Measurement of the force of rapid axopodial contraction in Echinosphaerium.

机构信息

Laboratories of Cell Biology, Faculty of Integrated Arts and Sciences, Hiroshima University, Hiroshima, Japan.

出版信息

Eur J Protistol. 1992 Nov 20;28(4):430-3. doi: 10.1016/S0932-4739(11)80007-6. Epub 2011 Nov 2.

Abstract

The large heliozoan Echinosphaerium extends a number of needle-like axopodia by which it captures food organisms. Every axopodium contains a bundle of several hundreds of axonemal microtubules as a cytoskeletal element. When the tip of a poly-L-lysine-coated glass micro-needle came into contact with the distal part of an axopodium, a rapid axopodial contraction (2.6 mm/s) occurred with a concomitant bending of the needle toward the cell body. In this report, we measured the force of the axopodial contraction by utilizing the relation between force and bending displacement of the micro-needle, and examined a possibility that the axopodial contraction is ascribed to the axopodial tension (surface tension and/or cytoplasmic elasticity) that is developed as a result of microtubule degradation. The force of the axopodial contraction was estimated in the order of 10(-9) N. Treatment with 10 mM colchicine induced disassembly of the axopodial microtubules and a resulting slow retraction of the axopodia (0.1 μm/s) occurred. The force of the slow retraction was also measured by the same procedure to estimate the axopodial tension, and was in the order of 10(-11) N. It was thus demonstrated that the motive force for axopodial contraction cannot be explained as an axopodial tension generated as a result of disassembly of the microtubules.

摘要

大型放射虫类的 Echinosphaerium 通过伸出许多针状的轴突来捕获食物生物。每个轴突包含一束数百个轴突微管作为细胞骨架元素。当涂有多聚赖氨酸的玻璃微针的尖端与轴突的远端接触时,会发生快速的轴突收缩(2.6mm/s),同时针向细胞体弯曲。在本报告中,我们利用微针的力与弯曲位移之间的关系来测量轴突收缩的力,并检查了轴突收缩归因于微管降解产生的轴突张力(表面张力和/或细胞质弹性)的可能性。轴突收缩的力估计在 10(-9)N 的数量级。用 10mM 秋水仙素处理会导致轴突微管的解体,从而导致轴突的缓慢回缩(0.1μm/s)。通过相同的程序测量缓慢回缩的力来估计轴突张力,其大小为 10(-11)N。因此,证明了轴突收缩的动力不能解释为微管解聚产生的轴突张力。

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