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低渗应激激活牛睫状上皮细胞中的三种不同氯离子通道。

Three different Cl- channels in the bovine ciliary epithelium activated by hypotonic stress.

作者信息

Zhang J J, Jacob T J

机构信息

Physiology Unit, School of Molecular and Medical Biosciences, University of Wales, Cardiff, UK.

出版信息

J Physiol. 1997 Mar 1;499 ( Pt 2)(Pt 2):379-89. doi: 10.1113/jphysiol.1997.sp021935.

Abstract
  1. Hypotonic solution induced transient Cl- channel activity in both pigmented and non-pigmented ciliary epithelial cells in cell-attached patches. 2. The activation time constants for these currents were 63 and 97 s for non-pigmented and pigmented ciliary epithelial (NPCE and PCE) cells, respectively. The currents inactivated during the exposure to hypotonic solution with time constants of 59 and 304 s for NPCE and PCE cells, respectively. 3. Single channel analysis revealed the presence of a low-conductance Cl- channel in both the NPCE (7.3 +/- 0.4 pS) and PCE (8.6 +/- 0.9 pS) cells. In addition, an intermediate-conductance (18.8 pS) channel was found alone in the NPCE cells and a maxi Cl- channel (105 pS) was found in the PCE cells. The similarities between the 18.8 pS Cl- channel and the volume-activated organic osmolyte-anion channel (VSOAC) are discussed. 4. The hypotonic activation of all three Cl- channels was prevented by the inclusion of 100 microM 5-nitro-2-(3-phenylpropylamino)benzoic acid (NPPB) in the patch pipette. 5. Inclusion of tamoxifen in the patch pipette inhibited only the intermediate-conductance channel in the NPCE cells. This is consistent with the identification of the intermediate 18 pS Cl- channel, found only in NPCE cells, as VSOAC. 6. Negative pressure also evoked single Cl- channel activity but the activation kinetics were quite different, suggesting that, even if the channels are the same, the second messenger pathways involved are different. 7. The activation/inactivation kinetics of these Cl- channels correlate well with the time course of regulatory volume decrease (RVD) in these cells, suggesting that these channels may well participate in the process of RVD. 8. The asymmetrical distribution of Cl- channels in the ciliary epithelium may be significant for aqueous humour secretion. For instance, the presence of the VSOAC-like channel in the NPCE cells may allow one-way traffic of anions and organic osmolytes into the eye and, if these solutes were loaded by the PCE cells, then a vectorial flow from the blood into the eye would occur.
摘要
  1. 低渗溶液在细胞贴附式膜片钳记录中可诱导色素性和非色素性睫状上皮细胞出现瞬时氯离子通道活性。2. 这些电流的激活时间常数,非色素性和色素性睫状上皮(NPCE和PCE)细胞分别为63秒和97秒。在暴露于低渗溶液期间,NPCE和PCE细胞电流的失活时间常数分别为59秒和304秒。3. 单通道分析显示,NPCE细胞(7.3±0.4 pS)和PCE细胞(8.6±0.9 pS)中均存在低电导氯离子通道。此外,在NPCE细胞中单独发现了一种中电导(18.8 pS)通道,在PCE细胞中发现了一种大电导氯离子通道(105 pS)。文中讨论了18.8 pS氯离子通道与容积激活有机渗透阴离子通道(VSOAC)之间的相似性。4. 膜片钳微管中加入100 microM 5-硝基-2-(3-苯丙基氨基)苯甲酸(NPPB)可阻止所有三种氯离子通道的低渗激活。5. 膜片钳微管中加入他莫昔芬仅抑制NPCE细胞中的中电导通道。这与仅在NPCE细胞中发现的18 pS中电导氯离子通道被鉴定为VSOAC一致。6. 负压也可诱发单个氯离子通道活性,但激活动力学有很大差异,这表明,即使通道相同,所涉及的第二信使途径也不同。7. 这些氯离子通道的激活/失活动力学与这些细胞中调节性容积减小(RVD)的时间进程密切相关,表明这些通道很可能参与了RVD过程。8. 氯离子通道在睫状上皮中的不对称分布可能对房水分泌具有重要意义。例如,NPCE细胞中存在类似VSOAC的通道可能允许阴离子和有机渗透物单向流入眼内,如果这些溶质由PCE细胞加载,那么就会出现从血液到眼内的向量流。

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