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龙虾肌肉中碱金属阳离子的渗透性。电生理分析与渗透测定分析的比较。

Permeability of alkali metal cations in lobster muscle. A comparison of electrophysiological and osmometric analyses.

作者信息

Gainer H, Grundfest H

出版信息

J Gen Physiol. 1968 Mar;51(3):399-425. doi: 10.1085/jgp.51.3.399.

Abstract

Single muscle fibers from lobster walking legs are effectively impermeable to Na, but are permeable to K. They shrink in hyperosmotic NaCl; they swell in low NaCl media which are hyposmotic or which are made isosmotic with the addition of KCl. In conformity, the membrane potential is relatively insensitive to changes in external Na, while it responds according to the Nernst relation for changes in external K. When the medium is made isosmotic or hyperosmotic with RbCl the volume and membrane potential changes are of essentially the same magnitudes as those in media enriched with KCl. The time courses for attaining equilibrium are slower, indicating that Rb is less permeant than K. Substitution of CsCl for NaCl (isosmotic condition) produces no change in volume of the muscle fiber. Addition of CsCl (hyperosmotic condition) causes a shrinkage which attains a steady state, as is the case in hyperosmotic NaCl. Osmotically, therefore, Cs appears to be no more permeant than is Na. However, the membrane depolarizes slowly in Cs-enriched media and eventually comes to behave as an ideal Cs electrode. Thus, the electrode properties of the lobster muscle fiber membrane may not depend upon the diffusional relations of the membrane and ions, and the osmotic permeability of the membrane for a given cation may not correspond with the electrophysiologically deduced permeability. Comparative data on the effects of NH(4) and Li are also included and indicate several other degrees of complexity in the cell membrane.

摘要

龙虾步足的单个肌纤维对钠离子有效不可渗透,但对钾离子可渗透。它们在高渗氯化钠溶液中会收缩;在低渗氯化钠介质(低渗或加入氯化钾使其等渗)中会膨胀。相应地,膜电位对外界钠离子的变化相对不敏感,而对外部钾离子的变化则根据能斯特关系做出响应。当介质用氯化铷调至等渗或高渗时,体积和膜电位的变化幅度与富含氯化钾的介质中的变化基本相同。达到平衡的时间进程较慢,表明铷的渗透性比钾低。用氯化铯替代氯化钠(等渗条件)不会使肌纤维体积发生变化。添加氯化铯(高渗条件)会导致收缩并达到稳定状态,这与高渗氯化钠的情况相同。因此,从渗透角度来看,铯似乎并不比钠更具渗透性。然而,在富含铯的介质中膜会缓慢去极化,最终表现得像一个理想的铯电极。因此,龙虾肌纤维膜的电极特性可能不取决于膜与离子的扩散关系,并且膜对给定阳离子的渗透通透性可能与电生理学推导的通透性不一致。还包括了关于铵离子和锂离子作用的比较数据,这些数据表明细胞膜还存在其他几种复杂程度。

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