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亨利氏袢升支粗段中的氯离子转运:质膜囊泡中氯化钠共转运系统的钾依赖性和化学计量学

Chloride transport in the thick ascending limb of Henle's loop: potassium dependence and stoichiometry of the NaCl cotransport system in plasma membrane vesicles.

作者信息

Koenig B, Ricapito S, Kinne R

出版信息

Pflugers Arch. 1983 Nov;399(3):173-9. doi: 10.1007/BF00656711.

Abstract

Cells were isolated from the thick ascending limb of Henle's loop of rabbit kidney outer medulla and a plasma membrane fraction was prepared by differential centrifugation. Sodium and rubidium uptake into the plasma membrane vesicles were determined by a rapid filtration technique. In the presence of a 100 mM KCl gradient and 0.5 mM sodium the vesicles took up 252 +/- 82 pmoles sodium/mg protein X 15s; 52% of the uptake was dependent on the presence of chloride or inhibited by 10(-3) M bumetanide. If KCl was stepwise replaced by choline chloride, sodium uptake decreased in the absence of bumetanide but was only insignificantly altered in the presence of bumetanide. Potassium exerted a halfmaximum stimulation at 22.3 +/- 9.7 mM. In tracer exchange experiments under zero salt gradient conditions, sodium uptake was also strongly reduced in the absence of potassium. Rubidium uptake into the same membrane fraction was highest in the presence of a NaCl gradient, and decreased 41% when sodium was replaced by choline or when 10(-3) M bumetanide was present. Replacement of sodium chloride by sodium nitrate also inhibited rubidium uptake. When the sodium, chloride and potassium dependence of the bumetanide sensitive sodium uptake was investigated in more detail, Hill coefficients for sodium of 1.0 +/- 0.03, for chloride of 1.8 +/- 0.2 and for potassium of 0.98 +/- 0.03 were obtained. These results are consistent with the presence of a Na-Cl-K cotransport system in the medullary thick ascending limb of Henle's loop which may operate with a stoichiometry of 1/2/1.

摘要

从兔肾外髓质亨氏袢的髓袢升支粗段分离细胞,并通过差速离心制备质膜部分。通过快速过滤技术测定质膜囊泡对钠和铷的摄取。在存在100 mM KCl梯度和0.5 mM钠的情况下,囊泡在15秒内摄取252±82皮摩尔钠/毫克蛋白质;52%的摄取依赖于氯离子的存在或被10⁻³ M布美他尼抑制。如果用氯化胆碱逐步替代KCl,在不存在布美他尼的情况下钠摄取减少,但在存在布美他尼的情况下仅略有改变。钾在22.3±9.7 mM时产生半数最大刺激。在零盐梯度条件下的示踪剂交换实验中,在不存在钾的情况下钠摄取也强烈减少。在存在NaCl梯度的情况下,同一膜部分对铷的摄取最高,当钠被胆碱替代或存在10⁻³ M布美他尼时,摄取减少4l%。用硝酸钠替代氯化钠也抑制铷摄取。当更详细地研究布美他尼敏感的钠摄取对钠、氯和钾的依赖性时,得到钠的希尔系数为1.0±0.03,氯的希尔系数为1.8±0.2,钾的希尔系数为0.98±0.03。这些结果与髓袢升支粗段存在Na-Cl-K共转运系统一致,该系统可能以1/2/1的化学计量比运行。

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