Suppr超能文献

水杨酸对酵母新陈代谢及钾离子含量的影响。

The effects of salicylic acid on metabolism and potassium ion content in yeast.

作者信息

Scharff T G, Perry A C

出版信息

Proc Soc Exp Biol Med. 1976 Jan;151(1):72-7. doi: 10.3181/00379727-151-39146.

Abstract

Under anaerobic conditions, at low pH and 30 degrees, commercial baker's yeast loses K+ ion in the presence of salicylic acid. Glucose utilization is inhibited. In suspensions containing no glucose, carbohydrate stores of the cell are dissimilated to carbon dioxide and alcohol. The ion loss and inhibitory effects of salicylic acid on glucose utilization are reversed by washing the cells free of salicylate. The loss of K+ appears to be due at least partly to a K+-H+ exchange process. An unexplained maximum is seen in the curves of either net K+ loss or K+ efflux versus salicylic acid concentration. At 6 degrees the effects of salicylic acid on both endogenous metabolism and net K+ loss are minimal. Furthermore, no maximum is seen in the K+ loss-salicyclic concentration curve at this temperature. It is generalized that salicylic acid or salicylate may elicit K+ leakage from many types of cells, i.e., a fundamental action of this compound may be its ability to affect (reduce) K+ content of the cell; furthermore, it appears that the salicylate effects on K+ loss may be associated in an as-yet-unknown manner with the metabolic effects of this compound. The effects of salicylate on K+ loss in yeast may not be unique for this compound, since no experiments of this nature have been done with other penetrating undissociated acids.

摘要

在厌氧条件下,于低pH值和30摄氏度时,市售面包酵母在水杨酸存在的情况下会失去钾离子。葡萄糖的利用受到抑制。在不含葡萄糖的悬浮液中,细胞的碳水化合物储备会分解为二氧化碳和酒精。通过将细胞洗涤至不含水杨酸盐,可逆转水杨酸对钾离子流失和葡萄糖利用的抑制作用。钾离子的流失似乎至少部分归因于钾离子-氢离子交换过程。在净钾离子流失或钾离子外流与水杨酸浓度的曲线中可观察到一个无法解释的最大值。在6摄氏度时,水杨酸对内源代谢和净钾离子流失的影响最小。此外,在此温度下,钾离子流失-水杨酸浓度曲线中未出现最大值。一般认为,水杨酸或水杨酸盐可能会引发多种类型细胞的钾离子泄漏,即该化合物的一个基本作用可能是其影响(降低)细胞钾离子含量的能力;此外,水杨酸盐对钾离子流失的影响似乎可能以一种尚不清楚的方式与该化合物的代谢作用相关。水杨酸对酵母中钾离子流失的影响可能并非该化合物所特有,因为尚未对其他可穿透的未解离酸进行此类实验。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验