首页> 美国卫生研究院文献>The Journal of General Physiology >Volume-Dependent Atp-Conductive Large-Conductance Anion Channel as a Pathway for Swelling-Induced Atp Release
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Volume-Dependent Atp-Conductive Large-Conductance Anion Channel as a Pathway for Swelling-Induced Atp Release

机译:体积相关的Atp导电大电导阴离子通道作为溶胀诱导Atp释放的途径

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摘要

In mouse mammary C127i cells, during whole-cell clamp, osmotic cell swelling activated an anion channel current, when the phloretin-sensitive, volume-activated outwardly rectifying Cl channel was eliminated. This current exhibited time-dependent inactivation at positive and negative voltages greater than around ±25 mV. The whole-cell current was selective for anions and sensitive to Gd3+. In on-cell patches, single-channel events appeared with a lag period of ∼15 min after a hypotonic challenge. Under isotonic conditions, cell-attached patches were silent, but patch excision led to activation of currents that consisted of multiple large-conductance unitary steps. The current displayed voltage- and time-dependent inactivation similar to that of whole-cell current. Voltage-dependent activation profile was bell-shaped with the maximum open probability at −20 to 0 mV. The channel in inside-out patches had the unitary conductance of ∼400 pS, a linear current-voltage relationship, and anion selectivity. The outward (but not inward) single-channel conductance was suppressed by extracellular ATP with an IC50 of 12.3 mM and an electric distance (δ) of 0.47, whereas the inward (but not outward) conductance was inhibited by intracellular ATP with an IC50 of 12.9 mM and δ of 0.40. Despite the open channel block by ATP, the channel was ATP-conductive with PATP/PCl of 0.09. The single-channel activity was sensitive to Gd3+, SITS, and NPPB, but insensitive to phloretin, niflumic acid, and glibenclamide. The same pharmacological pattern was found in swelling-induced ATP release. Thus, it is concluded that the volume- and voltage-dependent ATP-conductive large-conductance anion channel serves as a conductive pathway for the swelling-induced ATP release in C127i cells.
机译:在小鼠乳腺C127i细胞中,在全细胞钳夹过程中,渗透素细胞膨胀激活了阴离子通道电流,而对促绿体激素敏感,体积激活的向外整流的Cl -通道被消除了。该电流在大于和等于±25 mV的正负电压下表现出时间依赖性失活。全细胞电流对阴离子具有选择性,对Gd 3 +敏感。在细胞补丁中,低渗刺激后约15分钟的滞后周期出现单通道事件。在等渗条件下,细胞附着的膜片是沉默的,但膜片切除导致电流激活,该电流由多个大电导统一步骤组成。电流显示出与电压和时间有关的失活,类似于全细胞电流。电压相关的激活曲线呈钟形,最大打开概率为-20至0 mV。由内而外的贴片中的通道具有约400 pS的单位电导率,线性电流-电压关系和阴离子选择性。胞外ATP抑制了向外(但不是内向)电导,IC50为12.3 mM,电距离(δ)为0.47,而胞内ATP抑制了内向(但不是外向)电导,IC50为12.9 mM,δ为0.40。尽管ATP阻止了开放通道,但该通道还是ATP传导的,PAP / PC1为0.09。单通道活性对Gd 3 +,SITS和NPPB敏感,但对毛绿菌素,尼氟酸和格列本脲不敏感。在溶胀诱导的ATP释放中发现了相同的药理模式。因此,可以得出结论,与体积和电压有关的ATP传导性大传导阴离子通道可作为C127i细胞中溶胀诱导的ATP释放的传导途径。

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