Flamm R E, Birnberg N C, Kaczmarek L K
Department of Pharmacology, Yale University School of Medicine, New Haven, CT 06510-8066.
Pflugers Arch. 1990 Apr;416(1-2):120-5. doi: 10.1007/BF00370232.
The sensitivity of voltage-dependent sodium current to the sodium channel blocker tetrodotoxin (TTX) is altered by transfection of a c-Ha-ras oncogene into an excitable cell line. Control AtT-20 cells, a cell line derived from a mouse anterior pituitary tumor, were found to express both a TTX-sensitive and a TTX-resistant sodium current. AtT-20 cells transfected with the c-Ha-ras gene expressed only a TTX-sensitive current. Properties of TTX-sensitive and -resistant currents were also examined. No differences in voltage dependence of activation or inactivation between the TTX-sensitive and -resistant currents were observed. The rate of inactivation of the TTX-resistant current in control cells was slower, than that of the TTX-sensitive current in either control or ras-transfected AtT-20 cells.
通过将c-Ha-ras癌基因转染到可兴奋细胞系中,电压依赖性钠电流对钠通道阻滞剂河豚毒素(TTX)的敏感性会发生改变。发现源自小鼠垂体前叶肿瘤的对照AtT-20细胞系表达一种对TTX敏感和一种对TTX耐药的钠电流。用c-Ha-ras基因转染的AtT-20细胞仅表达对TTX敏感的电流。还研究了对TTX敏感和耐药电流的特性。未观察到对TTX敏感和耐药电流在激活或失活的电压依赖性方面存在差异。对照细胞中对TTX耐药电流的失活速率比对照或经ras转染的AtT-20细胞中对TTX敏感电流的失活速率慢。