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ΔF508-CFTR通道:动力学、福斯可林激活作用及黄嘌呤增强作用

Delta F508-CFTR channels: kinetics, activation by forskolin, and potentiation by xanthines.

作者信息

Haws C M, Nepomuceno I B, Krouse M E, Wakelee H, Law T, Xia Y, Nguyen H, Wine J J

机构信息

Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Am J Physiol. 1996 May;270(5 Pt 1):C1544-55. doi: 10.1152/ajpcell.1996.270.5.C1544.

Abstract

Trafficking, activation, and kinetics of delta F508-cystic fibrosis transmembrane conductance regulator (CFTR) and CFTR were compared in stably transduced C127I mouse mammary epithelial cells. Western blots detected a small amount of fully glycosylated delta F508-CFTR Efflux of 125I was stimulated by forskolin with the same mean effective concentration (EC50; approximately 0.5 microM) for CFTR and delta F508-CFTR cells, but the maximum response was reduced more than fivefold and its latency increased approximately threefold in delta F508-CFTR cells. In delta F508-CFTR cells, 3-isobutyl-1-methylxanthine (IBMX; EC50 = 1.45 microM) and 8-cyclopentyl-1,3-dipropylxanthine (CPX; EC50 = 58 microM) increased the peak forskolin-stimulated efflux rate approximately 2.5-fold and decreased the time to peak. A sevenfold increase in intracellular adenosine 3',5'-cyclic monophosphate (cAMP) levels accompanied potentiation of forskolin-induced 125I efflux by IBMX but not by CPX. Elevation of intracellular cAMP increased linear voltage-independent whole cell currents 30-fold in CFTR and 4-fold in delta F508-CFTR cells; the response rate in delta F508-CFTR cells was much slower. Single-channel currents were detected in 57 of 68 cell-attached patches from forskolin-prestimulated CFTR cells vs. 6 of 35 patches in delta F508-CFTR cells. Mean number of active channels per patch was 4.1 for CFTR [open probability (Po) = 0.34] and 0.2 for delta F508-CFTR (Po = 0.11). The lower Po of delta F508-CFTR resulted from an approximately threefold longer mean interburst interval. We estimate that forskolin-stimulated chloride conductance of delta F508-CFTR C127I cells is < 5% of CFTR cells. CPX is approximately 25-fold more potent than IBMX in potentiating delta F508-CFTR and may operate by a mechanism other than elevation of cAMP.

摘要

在稳定转导的C127I小鼠乳腺上皮细胞中,对ΔF508-囊性纤维化跨膜传导调节因子(CFTR)和CFTR的转运、激活及动力学进行了比较。蛋白质免疫印迹法检测到少量完全糖基化的ΔF508-CFTR。对于CFTR和ΔF508-CFTR细胞,毛喉素以相同的平均有效浓度(EC50;约0.5微摩尔)刺激125I的外流,但在ΔF508-CFTR细胞中,最大反应降低了五倍以上,潜伏期增加了约三倍。在ΔF508-CFTR细胞中,3-异丁基-1-甲基黄嘌呤(IBMX;EC50 = 1.45微摩尔)和8-环戊基-1,3-二丙基黄嘌呤(CPX;EC50 = 58微摩尔)使毛喉素刺激的外流峰值速率增加了约2.5倍,并缩短了达到峰值的时间。细胞内3',5'-环磷酸腺苷(cAMP)水平增加了七倍,这伴随着IBMX增强毛喉素诱导的125I外流,但CPX没有。细胞内cAMP升高使CFTR细胞中的线性非电压依赖性全细胞电流增加了30倍,在ΔF508-CFTR细胞中增加了4倍;ΔF508-CFTR细胞中的反应速率要慢得多。在毛喉素预刺激的CFTR细胞的68个细胞贴附膜片中有57个检测到单通道电流,而在ΔF508-CFTR细胞的35个膜片中只有6个检测到。每个膜片的平均活性通道数对于CFTR为4.1个[开放概率(Po)= 0.34],对于ΔF508-CFTR为0.2个(Po = 0.11)。ΔF508-CFTR较低的Po是由于平均爆发间隔时间长了约三倍。我们估计毛喉素刺激的ΔF508-CFTR C127I细胞的氯电导小于CFTR细胞的5%。在增强ΔF508-CFTR方面,CPX的效力比IBMX高约25倍,其作用机制可能不是通过升高cAMP。

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