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Cell cycle-dependent expression of volume-activated chloride currents in nasopharyngeal carcinoma cells.

机译:鼻咽癌细胞中激活氯电流的细胞周期依赖性表达。

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摘要

Patch-clamping and cell image analysis techniques were used to study the expression of the volume-activated Cl(-) current, I(Cl(vol)), and regulatory volume decrease (RVD) capacity in the cell cycle in nasopharyngeal carcinoma cells (CNE-2Z). Hypotonic challenge caused CNE-2Z cells to swell and activated a Cl(-) current with a linear conductance, negligible time-dependent inactivation, and a reversal potential close to the Cl(-) equilibrium potential. The sequence of anion permeability was I(-) > Br(-) > Cl(-) > gluconate. The Cl(-) channel blockers tamoxifen, 5-nitro-2-(3-phenylpropylamino)benzoic acid (NPPB), and ATP inhibited I(Cl(vol)). Synchronous cultures of cells were obtained by the mitotic shake-off technique and by a double chemical-block (thymidine and hydroxyurea) technique. The expression of I(Cl(vol)) was cell cycle dependent, being high in G(1) phase, downregulated in S phase, but increasing again in M phase. Hypotonic solution activated RVD, which was cell cycle dependent and inhibited by the Cl(-) channel blockers NPPB, tamoxifen, and ATP. The expression of I(Cl(vol)) was closely correlated with the RVD capacity in the cell cycle, suggesting a functional relationship. Inhibition of I(Cl(vol)) by NPPB (100 microM) arrested cells in G(0)/G(1). The data also suggest that expression of I(Cl(vol)) and RVD capacity are actively modulated during the cell cycle. The volume-activated Cl(-) current associated with RVD may therefore play an important role during the cell cycle progress.
机译:膜片钳和细胞图像分析技术用于研究鼻咽癌细胞中细胞周期激活的Cl(-)电流I(Cl(vol))的表达和调节体积减少(RVD)能力。 CNE-2Z)。低渗挑战导致CNE-2Z细胞膨胀并以线性电导,可忽略的时间依赖性失活和接近Cl(-)平衡电位的反转电位激活Cl(-)电流。阴离子渗透性的顺序为I(-)> Br(-)> Cl(-)>葡萄糖酸。 Cl(-)通道阻滞剂他莫昔芬,5-硝基-2-(3-苯基丙基氨基)苯甲酸(NPPB)和ATP抑制了I(Cl(vol))。通过有丝分裂摇动技术和双重化学阻断(胸苷和羟基脲)技术获得细胞的同步培养。 I(Cl(vol))的表达与细胞周期有关,在G(1)期较高,在S期下调,但在M期再次增加。低渗溶液激活RVD,它依赖于细胞周期,并受Cl(-)通道阻滞剂NPPB,他莫昔芬和ATP抑制。 I(Cl(vol))的表达与细胞周期中RVD的容量密切相关,提示功能相关。 NPPB(100 microM)阻滞了I(Cl(vol))在G(0)/ G(1)中的细胞。数据还表明,I(Cl(vol))和RVD容量的表达在细胞周期中受到主动调节。因此,与RVD相关的体积激活的Cl(-)电流可能在细胞周期进程中起重要作用。

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