首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Na-dependent glutamate transport in high K and high glutathione (HK/HG) and high K and low glutathione (HK/LG) dog red blood cells
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Na-dependent glutamate transport in high K and high glutathione (HK/HG) and high K and low glutathione (HK/LG) dog red blood cells

机译:钠依赖性谷氨酸在高K高谷胱甘肽(HK / HG)和高K低谷胱甘肽(HK / LG)狗红细胞中的转运

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Na-dependent glutamate (Glu) influxes in the red blood cells of normal low K (LK), high K and high glutathione (HK/HG), and high K and low glutathione (HK/LG) dogs were compared. The ranges of the influxes in LK, HK/HG and HK/LG cells were 1.0–63, 62–174 and 1.3–26 μmol/1 cells per h, respectively. Some LK and HK/LG dogs had red blood cells with extremely low Glu influxes. In cells with extremely low Glu influxes, however, there were clear Na-dependent Glu influxes. In LK, HK/HG and HK/LG cells, the Km of Na-dependent Glu influx with respect to the medium Glu concentration were 17, 20 and 19 mM, respectively, and the half-maximal activation (K1/2) with respect to medium Na concentration was 39, 40 and 42 μM, respectively. By the addition of harmaline, a hallucinogenic alkaloid, the Vmax in LK cells was not affected and the Km was increased, while the Vmax was decreased and the Km increased in HK/HG and HK/LG cells.The Ki value with harmaline by means of Dixon plot in LK cells was 5.2 mM, against 1.8 and 1.9 mM in HK/HG and HK/LG cells, respectively. These results suggest that the difference in the Na-dependent Glu influxes between 2 HK groups was due to the varying quantity, not the quality, of the transporter.
机译:比较了正常低K(LK),高K和高谷胱甘肽(HK / HG)以及高K和低谷胱甘肽(HK / LG)狗的红细胞中的钠依赖性谷氨酸(Glu)流入量。 LK,HK / HG和HK / LG细胞的流入量分别为每小时1.0–63、62–174和1.3–26μmol/ 1个细胞。一些LK和HK / LG狗的红细胞中Glu流入量极低。然而,在具有极低Glu流入量的细胞中,有明显的Na依赖性Glu流入量。在LK,HK / HG和HK / LG细胞中,依赖于Na的Glu流入相对于中等Glu浓度的Km分别为17、20和19 mM,而相对于中等Glu浓度的半最大活化(K1 / 2) Na的中等浓度分别为39、40和42μM。通过添加致幻生物碱harmaline,HK / HG和HK / LG细胞中LK细胞的Vmax不受影响,Km升高,而Vmax降低且Km升高。 LK细胞中Dixon图的图谱为5.2 mM,而HK / HG和HK / LG细胞中的Dixon图分别为1.8 mM和1.9 mM。这些结果表明,两个HK组之间Na依赖性Glu流入的差异是由于转运蛋白的数量而不是质量的变化。

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