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The relation between sodium ion content and efflux of labelled sodium ions from yeast

机译:钠离子含量与酵母标记钠离子流出之间的关系

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摘要

1. The activity of the Na+ pump in an Na+-rich yeast was compared with that in an Na+-rich frog sartorius muscle, and found to be very similar to it over the first hour if both were immersed in fluid containing 104mm-Na+ plus 10mm-K+. 2. The efflux of labelled Na+ from an Na+-rich yeast into an Na+-free medium was investigated. In this Na+-free medium, Li+ or choline replaced the Na+, and the efflux–content curves obtained with either of these ions were very similar. The curves were sigmoid, reaching or approaching a saturation at the higher internal Na+ concentrations. 3. The curves obtained with yeast resembled those similarly obtained with frog sartorius muscle by Keynes & Swan (1959), Mullins & Frumento (1963), Harris (1965) and Keynes (1965). The slope of the plot of the logarithm of the Na+ efflux against the logarithm of the Na+ concentration in the cells reached its highest value at an internal Na+ concentration of 15m-equiv./kg. (27m-equiv./l. of cell water). 4. The effect of external K+ concentration on the efflux–content relationship was examined. An increased K+ concentration was found to increase the Na+ efflux by raising the saturation value, which is similar to observations made by Harris (1965) with frog muscle. 5. The effect of increasing the external carbon dioxide concentration was investigated. No effect on the slope of the plot of the logarithm of the Na+ efflux against the logarithm of the Na+ content was noticed even when the yeast suspension was equilibrated with 100% carbon dioxide. There was, however, a decrease in the amount of Na+ efflux on equilibrating the solution with carbon dioxide.
机译:1.比较了富含Na + 的酵母中的Na + 泵的活性与富含Na + 的青蛙sartorius肌肉中的活性。 ,并且如果将两者都浸入含有104mm-Na + 加上10mm-K + 的液体中,则在第一个小时内与之非常相似。 2.研究了标记的Na + 从富含Na + 的酵母中向无Na + 的培养基中的流出。在这种不含Na + 的介质中,Li + 或胆碱替代了Na + ,并且通过这些离子之一获得的流出量曲线非常相似。曲线为S形,在较高的内部Na + 浓度下达到或接近饱和。 3.用酵母获得的曲线类似于凯恩斯和斯旺(1959),穆林斯和弗鲁门托(1963),哈里斯(1965)和凯恩斯(1965)用青蛙sartorius肌肉获得的曲线。 Na + 外排的对数与细胞中Na + 浓度的对数的关系图的斜率在内部Na +时达到最大值浓度为15m当量/ kg。 (27m-equiv./l。细胞水)。 4.研究了外部K + 浓度对外排-含量关系的影响。发现增加的K + 浓度可通过增加饱和度值来增加Na + 的流出,这类似于Harris(1965)对青蛙肌肉所做的观察。 5.研究了增加外部二氧化碳浓度的作用。即使将酵母悬浮液平衡至100%,也未观察到Na + 外排对数对Na + 含量对数的曲线斜率的影响。二氧化碳。但是,用二氧化碳平衡溶液后,Na + 的流出量减少了。

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