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人B淋巴细胞中的嘌呤受体激活的阳离子通道。

Purinoceptor-operated cationic channels in human B lymphocytes.

作者信息

Markwardt F, Löhn M, Böhm T, Klapperstück M

机构信息

Julius Bernstein Institute for Physiology, Martin Luther University, Halle, Germany.

出版信息

J Physiol. 1997 Jan 1;498 ( Pt 1)(Pt 1):143-51. doi: 10.1113/jphysiol.1997.sp021847.

Abstract
  1. Using the patch clamp method in the outside-out configuration, purinoceptor-dependent unitary currents were measured in tonsillar and transformed tonsillar human B lymphocytes. 2. Single channel currents were evoked by ATP4-, the free-acid form of ATP, and by 2',3' O-benzoyl-4-benzoyl-ATP (BzATP) in the micromolar concentration range, but not by 10 mM ADP3- or 0.5 mM Mg(2+)-bound ATP. 3. The channels could be activated and deactivated several times for as long as 30 min even in the absence of intracellular ATP, GTP, or glucose. 4. The channels were selective for small cations and had a conductance of 9 pS with Cs+ as the intracellular and Na+ as the extracellular monovalent cation. 5. The half-maximal activation of the channels was obtained by 114 microM ATP4- and by 16 microM BzATP. The increase in the open probability after raising the ATP4- concentration was mainly due to a decrease in the times the channels spend in the closed state. 6. It is concluded that human B lymphocytes possess cationic channels directly gated by extracellular ATP4-. Their agonist binding characteristics are typical for P2z purinoceptors, but their permeation behaviour is different from the large non-specific pores formed by ATP4- in fibroblasts, macrophages and mast cells.
摘要
  1. 采用膜片钳技术的外侧向外模式,在扁桃体及转化的扁桃体人B淋巴细胞中测量嘌呤受体依赖性单位电流。2. 微摩尔浓度范围内的ATP4-(ATP的游离酸形式)和2',3'-O-苯甲酰基-4-苯甲酰基-ATP(BzATP)可诱发单通道电流,但10 mM ADP3-或0.5 mM与Mg(2+)结合的ATP则不能。3. 即使在没有细胞内ATP、GTP或葡萄糖的情况下,通道也能被激活和失活数次,长达30分钟。4. 这些通道对小阳离子具有选择性,以Cs+作为细胞内单价阳离子、Na+作为细胞外单价阳离子时,其电导为9 pS。5. 通道的半数最大激活浓度在ATP4-为114 microM、BzATP为16 microM时获得。提高ATP4-浓度后开放概率的增加主要是由于通道在关闭状态下停留时间的减少。6. 得出结论,人B淋巴细胞拥有由细胞外ATP4-直接门控的阳离子通道。它们的激动剂结合特性是P2z嘌呤受体的典型特征,但其通透行为不同于ATP4-在成纤维细胞、巨噬细胞和肥大细胞中形成的大的非特异性孔道。

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