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细胞氨基酸对艾氏腹水癌细胞中钠依赖性氨基酸转运的双峰效应。

Bimodal effects of cellular amino acids on Na+-dependent amino acid transport in Ehrlich cells.

作者信息

Johnstone R M, Laris P C

出版信息

Biochim Biophys Acta. 1980 Jul;599(2):715-30. doi: 10.1016/0005-2736(80)90212-6.

Abstract

Cells depleted of amino acids show lower rates of glycine or aminoisobutyric acid uptake than do freshly isolated cells. In the amino acid-depleted cells, addition of valinomycin stimulates amino acid influx at least to the level observed in freshly isolated cells. In cells containing high levels of cellular amino acids, valinomycin has little effect on influx of amino acids. It is concluded that the transport of amino acids in freshly isolated cells is elevated compared to depleted cells because the cells are hyperpolarized by the continuous loss of cellular amino acids during the transport assay. During this hyperpolarization by amino acid loss, transport of amino acids is not further stimulated by valinomycin at low external [K+] (10 mM +/- 5 mM). With the exception of preloading with glycine, cells preloaded with a single amino acid to a concentration greater than 20 mM show reduced rates of glycine and aminoisobutyric acid influx at early times (less than 15 min) compared to amino acid-depleted cells. The reduction of influx is transient and by 30 min, influx is greater in preloaded than in amino acid-depleted cells. Knowing that increases and decreases in the membrane potential are achieved by using varying external [K+] in the presence of valinomycin and propranolol, and using amino acid-depleted cells, it can be shown that an increased membrane potential increases the V for glycine and aminoisobutyric acid influx. A decrease in the potential difference results in a decreased V. Changes in Km also occur when the membrane potential is varied.

摘要

与刚分离的细胞相比,缺乏氨基酸的细胞对甘氨酸或氨基异丁酸的摄取速率更低。在缺乏氨基酸的细胞中,加入缬氨霉素可刺激氨基酸内流,至少达到刚分离细胞中观察到的水平。在细胞内氨基酸含量高的细胞中,缬氨霉素对氨基酸内流影响很小。得出的结论是,与缺乏氨基酸的细胞相比,刚分离的细胞中氨基酸的转运增加,这是因为在转运测定过程中,细胞因细胞内氨基酸的持续流失而发生超极化。在因氨基酸流失导致的这种超极化过程中,在低外部[K+](10 mM±5 mM)时,缬氨霉素不会进一步刺激氨基酸的转运。除了用甘氨酸预加载外,与缺乏氨基酸的细胞相比,预先加载单一氨基酸至浓度大于20 mM的细胞在早期(少于15分钟)显示甘氨酸和氨基异丁酸内流速率降低。内流的降低是短暂的,到30分钟时,预加载细胞中的内流比缺乏氨基酸的细胞更大。已知在存在缬氨霉素和普萘洛尔的情况下,通过改变外部[K+]以及使用缺乏氨基酸的细胞来实现膜电位的升高和降低,结果表明膜电位升高会增加甘氨酸和氨基异丁酸内流的V。电位差降低会导致V降低。当膜电位变化时,Km也会发生变化。

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