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Ca(2+)-induced tension development in the stalks of glycerinated Vorticella convallaria.

作者信息

Moriyama Y, Yasuda K, Ishiwata S, Asai H

机构信息

Department of Physics, School of Science and Engineering, Waseda University, Tokyo, Japan.

出版信息

Cell Motil Cytoskeleton. 1996;34(4):271-8. doi: 10.1002/(SICI)1097-0169(1996)34:4<271::AID-CM2>3.0.CO;2-B.

DOI:10.1002/(SICI)1097-0169(1996)34:4<271::AID-CM2>3.0.CO;2-B
PMID:8871814
Abstract

We have developed a method of measuring the isometric tension in glycerinated stalks of Vorticella convallaria. Using this method, we measured tension vs. pCa relations in glycerinated V. convallaria stalks. The maximum isometric tension was 4 x 10(-8) N on average. The Hill's parameter, n, which is the number of calcium ions bound simultaneously and cooperatively to a contractile element (a force generating element), is approximately 3.2 when the Ca2+ concentration is increased and 2.5 when it is decreased. In order to estimate the efficiency of the energy conversion of Ca2+ binding to mechanical work, we measured the Ca(2+)-induced Carnot cycle in the Vorticella stalk. The energy efficiency was tentatively estimated to be about 7%. With this method, we have also succeeded in measuring the isometric tension of isolated spasmoneme, the rubber-like contractile fibrous organelle in the stalk. The maximum tension of spasmoneme was approximately one tenth that of the glycerinated stalk. We speculate that the isolated spasmoneme was only partially functional due to damage sustained when it was pulled out of the stalk.

摘要

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Contraction and extension of Vorticella and its mechanical characterization under flow loading.
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Mechanics of Vorticella contraction.钟形虫收缩的力学机制。
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Unsteady motion, finite Reynolds numbers, and wall effect on Vorticella convallaria contribute contraction force greater than the stokes drag.涡虫的非稳定运动、有限雷诺数和壁面效应使其产生的收缩力大于斯托克斯阻力。
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