Analysis of the effect of permeant solutes on the hydraulic resistance of the plasma membrane in cells of Chara corallina.

IF 2.5 3区 生物学 Q3 CELL BIOLOGY
Masashi Tazawa, Randy Wayne, Maki Katsuhara
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Abstract

In the cells of Chara corallina, permeant monohydric alcohols including methanol, ethanol and 1-propanol increased the hydraulic resistance of the membrane (Lpm-1). We found that the relative value of the hydraulic resistance (rLpm-1) was linearly dependent on the concentration (Cs) of the alcohol. The relationship is expressed in the equation: rLpm-1 = ρmCs + 1, where ρm is the hydraulic resistance modifier coefficient of the membrane. Ye et al. (2004) showed that membrane-permeant glycol ethers also increased Lp-1. We used their data to estimate Lpm-1 and rLpm-1. The values of rLpm-1 fit the above relation we found for alcohols. When we plotted the ρm values of all the permeant alcohols and glycol ethers against their molecular weights (MW), we obtained a linear curve with a slope of 0.014 M-1/MW and with a correlation coefficient of 0.99. We analyzed the influence of the permeant solutes on the relative hydraulic resistance of the membrane (rLpm-1) as a function of the external (π0) and internal (πi) osmotic pressures. The analysis showed that the hydraulic resistance modifier coefficients (ρm) were linearly related to the MW of the permeant solutes with a slope of 0.012 M-1/MW and with a correlation coefficient of 0.84. The linear relationship between the effects of permeating solutes on the hydraulic resistance modifier coefficient (ρm) and the MW can be explained in terms of the effect of the effective osmotic pressure on the hydraulic conductivity of water channels. The result of the analysis suggests that the osmotic pressure and not the size of the permeant solute as proposed by (Ye et al., J Exp Bot 55:449-461, 2004) is the decisive factor in a solute's influence on hydraulic conductivity. Thus, characean water channels (aquaporins) respond to permeant solutes with essentially the same mechanism as to impermeant solutes.

渗透性溶质对珊瑚虫细胞质膜水阻的影响分析
在珊瑚菜细胞中,渗透性一元醇(包括甲醇、乙醇和 1-丙醇)会增加膜的水力阻力(Lpm-1)。我们发现,水力阻力的相对值(rLpm-1)与酒精的浓度(Cs)呈线性关系。其关系用公式表示为:rLpm-1 = ρmCs + 1,其中 ρm 是膜的水阻修正系数。Ye 等人(2004 年)的研究表明,膜渗透乙二醇醚也会增加 Lp-1。我们利用他们的数据估算了 Lpm-1 和 rLpm-1。rLpm-1 的值符合我们在醇类中发现的上述关系。当我们将所有渗透醇和乙二醇醚的 ρm 值与其分子量(MW)绘制成曲线时,我们得到了一条斜率为 0.014 M-1/MW、相关系数为 0.99 的线性曲线。我们分析了渗透溶质对膜的相对水力阻力(rLpm-1)的影响,它是外部渗透压(π0)和内部渗透压(πi)的函数。分析表明,水力阻力修正系数(ρm)与渗透溶质的分子量呈线性关系,斜率为 0.012 M-1/MW,相关系数为 0.84。渗透溶质对水力阻力改性系数(ρm)的影响与 MW 之间的线性关系可以用有效渗透压对水道水力传导性的影响来解释。分析结果表明,渗透压而不是(Ye 等人,J Exp Bot 55:449-461, 2004)提出的渗透溶质的大小是溶质影响水导率的决定性因素。因此,藻类水通道(aquaporins)对渗透性溶质的反应机制与对非渗透性溶质的反应机制基本相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Protoplasma
Protoplasma 生物-细胞生物学
CiteScore
6.60
自引率
6.90%
发文量
99
审稿时长
4-8 weeks
期刊介绍: Protoplasma publishes original papers, short communications and review articles which are of interest to cell biology in all its scientific and applied aspects. We seek contributions dealing with plants and animals but also prokaryotes, protists and fungi, from the following fields: cell biology of both single and multicellular organisms molecular cytology the cell cycle membrane biology including biogenesis, dynamics, energetics and electrophysiology inter- and intracellular transport the cytoskeleton organelles experimental and quantitative ultrastructure cyto- and histochemistry Further, conceptual contributions such as new models or discoveries at the cutting edge of cell biology research will be published under the headings "New Ideas in Cell Biology".
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