Department of Biology, Washington University, St. Louis, Missouri 63130.
Plant Physiol. 1979 Sep;64(3):374-8. doi: 10.1104/pp.64.3.374.
Experiments are reported in which the uptake of (86)Rb(+), used as an analog of K(+), into cultured cells of Arabidopsis thaliana is investigated. A single transport system is found with K(m) = 0.34 millimolar and V(max) = 14 nmoles per milligram of protein per hour. This system is blocked by the metabolic inhibitor carbonyl cyanide m-chlorophenyl hydrazone (CCCP) and by cold. At high concentrations of external K(+) (above 1 millimolar), a significant fraction of total uptake is energy-independent. No evidence is found for more than one energy-dependent uptake system or for concentration-dependent modifications of a carrier as postulated in multiphasic transport models.Rb(+) uptake was also examined in cultured cells derived from an "osmotic mutant" of Arabidopsis. The system closely resembles that found in wild type cells with the exception that the Michaelis-Menten constants are higher: K(m) = 1 millimolar and V(max) = 32 nanomoles per milligram of protein per hour.The possibility that these results are artifacts associated with use of cultured cells was checked by examining (86)Rb(+) uptake by roots of intact seedlings of wild type Arabidopsis. A single energy-dependent transport system is found with K(m) = 0.42 millimolar which is not significantly different from the K(m) of cultured cells. There is also energy-independent uptake at high external ion concentration.
报告了用(86)Rb(+)作为 K(+)的类似物,研究其在拟南芥培养细胞中的摄取的实验。发现了一种单一的转运系统,其 K(m)为 0.34 毫摩尔,V(max)为每毫克蛋白每小时 14 毫摩尔。该系统被代谢抑制剂羰基氰化物 m-氯苯腙(CCCP)和低温所阻断。在外部 K(+)浓度较高(超过 1 毫摩尔)时,总摄取的很大一部分是能量非依赖性的。没有证据表明存在超过一种能量依赖性摄取系统,或者像多相转运模型所假设的那样,载体的浓度依赖性修饰。还检查了拟南芥“渗透突变体”的培养细胞中的 Rb(+)摄取。该系统与在野生型细胞中发现的系统非常相似,除了米氏常数较高:K(m)为 1 毫摩尔,V(max)为每毫克蛋白每小时 32 毫摩尔。通过检查野生型拟南芥完整幼苗的根对(86)Rb(+)的摄取,检查了这些结果是否与使用培养细胞有关的假象。发现了一种单一的能量依赖性转运系统,其 K(m)为 0.42 毫摩尔,与培养细胞的 K(m)没有显著差异。在高外部离子浓度下也存在能量非依赖性摄取。