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首页> 外文期刊>American Journal of Physiology >Extracellular osmolarity modulates G protein-coupled receptor-dependent ATP release from 1321N1 astrocytoma cells.
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Extracellular osmolarity modulates G protein-coupled receptor-dependent ATP release from 1321N1 astrocytoma cells.

机译:细胞外渗透压调节1321N1星形细胞瘤细胞的G蛋白偶联受体依赖性ATP释放。

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摘要

We previously reported that ATP release from 1321N1 human astrocytoma cells could be stimulated either by activation of G protein-coupled receptors (GPCR) or by hypotonic stress. Cheema et al. (Cheema TA, Ward CE, Fisher SK. J Pharmacol Exp Ther 315: 755-763, 2005) have demonstrated that thrombin activation of protease-activated receptor 1 (PAR1) in 1321N1 cells and primary astrocytes acts synergistically with hypotonic stress to gate the opening of volume-sensitive organic osmolyte and anion channels (VSOAC) and that hypertonic stress strongly inhibits PAR1 gating of VSOAC. We tested the hypothesis that a VSOAC-type permeability might comprise a GPCR-regulated pathway for ATP export by determining whether PAR1-sensitive ATP release from 1321N1 cells is similarly potentiated by hypotonicity but suppressed by hypertonic conditions. Strong hypotonic stress by itself elicited ATP release and positively modulated the response to thrombin. Thrombin-dependent ATP release was also potentiated by mild hypotonic stress that by itself did not stimulate ATP export. Notably, PAR1-sensitive ATP export was greatly inhibited in hypertonic medium. Neither the potency nor efficacy of thrombin as an activator of proximal PAR1 signaling was affected by hypotonicity or hypertonicity. 1,9-Dideoxyforskolin and carbenoxolone similarly attenuated PAR1-dependent ATP release and suppressed the PAR1-independent ATP elicited by strong hypotonic stress. Probenecid attenuated PAR1-stimulated ATP release under isotonic but not mild hypotonic conditions and had no effect on PAR1-independent release stimulated by strong hypotonicity. PAR1-dependent ATP export under all osmotic conditions required concurrent signaling by Ca(2+) mobilization and Rho-GTPase activation. In contrast, PAR1-independent ATP release triggered by strong hypotonicity required neither of these intracellular signals. Thus, we provide the new finding that GPCR-regulated ATP release from 1321N1 astrocytoma cells is remarkably sensitive to both positive and negative modulation by extracellular osmolarity. This supports a model wherein GPCR stimulation and osmotic stress converge on an ATP release pathway in astrocytes that exhibits several features of VSOAC-type channels.
机译:我们以前曾报道过,可以通过激活G蛋白偶联受体(GPCR)或通过低渗应激来刺激从1321N1人星形细胞瘤细胞释放ATP。 Cheema等。 (Cheema TA,Ward CE,Fisher SK.J Pharmacol Exp Ther 315:755-763,2005)已经证明1321N1细胞和原代星形胶质细胞中的蛋白酶激活的受体1(PAR1)的凝血酶激活与低渗应激协同作用以控制门脉。体积敏感的有机渗透压和阴离子通道(VSOAC)的打开,高渗应力强烈抑制了VSOAC的PAR1门控。我们通过确定1321N1细胞的PAR1敏感性ATP释放是否被低渗类似地增强但被高渗条件抑制来验证VSOAC型通透性可能包括GPCR调控的ATP出口的假说。强烈的低渗应激本身会引起ATP释放并积极调节对凝血酶的反应。轻度的低渗应激也增强了凝血酶依赖性的ATP释放,而低渗压力本身并不刺激ATP的输出。值得注意的是,在高渗介质中,PAR1敏感的ATP出口受到极大的抑制。凝血酶作为近端PAR1信号激活剂的效力和功效均不受低渗性或高渗性的影响。 1,9-双脱氧福斯克林和羧苄索隆同样减弱了由强低渗应激引起的PAR1依赖性ATP释放并抑制了PAR1依赖性ATP。在等渗但不是轻度低渗的条件下,丙磺舒减弱了PAR1刺激的ATP释放,并且对强低渗刺激的PAR1独立释放没有影响。 PAR1依赖的ATP出口在所有渗透条件下都需要通过Ca(2+)动员和Rho-GTPase激活的并发信号。相反,强烈的低渗性触发的不依赖PAR1的ATP释放都不需要这些细胞内信号。因此,我们提供了一个新发现,即GPCR调节的1321N1星形细胞瘤细胞的ATP释放对细胞外渗透压的正向和负向调制都非常敏感。这支持了一种模型,其中GPCR刺激和渗透压收敛于星形胶质细胞中的ATP释放途径,该途径表现出VSOAC型通道的几种特征。

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