Kerrick W G, Hoar P E
Department of Physiology and Biophysics, University of Miami, School of Medicine, FL 33101, USA.
Can J Physiol Pharmacol. 1994 Nov;72(11):1361-7. doi: 10.1139/y94-196.
Smooth muscle was made permeable with alpha-toxin and beta-escin. ATPase activity was measured using a phosphoenolpyruvate-pyruvate kinase regenerating system for ATP that was monitored by NADH fluorescence changes, and Ca2+ was measured using fura 2 fluorescence. alpha-Toxin-and beta-escin-treated bundles of cells had a high ATPase activity, which was reduced 80% when exposed to 1% Triton X-100. This Triton-sensitive ATPase activity was increased by approximately 20% when GTP or GTP gamma S was added to the solutions and was of much greater magnitude than the Ca(2+)-activated ATPase associated with contraction. This high membrane ATPase activity will cause a gradient of ATP into and ADP out of the bundle of cells. Thus modulation of this ATPase by G-protein-receptor mechanisms could alter the force at a constant Ca2+ concentration by changing the ADP/ATP ratio within the cells. Measurements of the fura 2 fluorescence ratio (340/380) in alpha-toxin-treated bundles of cells following sudden changes in extracellular Ca2+ showed that the cells were not freely permeable to Ca EGTA. Similar experiments in beta-escin-treated cells showed the cells to be much more permeable to Ca EGTA. These experiments indicate that great care must be taken in alpha-toxin- and beta-escin-treated fibers to make sure that the intracellular ATP, ADP, and Ca2+ are held constant.
用α-毒素和β-七叶皂苷使平滑肌具有通透性。使用磷酸烯醇丙酮酸-丙酮酸激酶再生系统测量ATP酶活性,该系统用于监测由NADH荧光变化产生的ATP,并用fura 2荧光测量Ca2+。经α-毒素和β-七叶皂苷处理的细胞束具有较高的ATP酶活性,当暴露于1% Triton X-100时,该活性降低80%。当向溶液中添加GTP或GTPγS时,这种对Triton敏感的ATP酶活性增加约20%,且其幅度远大于与收缩相关的Ca(2+)激活的ATP酶。这种高膜ATP酶活性将导致ATP进入细胞束和ADP流出细胞束的梯度。因此,通过G蛋白受体机制对该ATP酶的调节可通过改变细胞内的ADP/ATP比值,在恒定Ca2+浓度下改变力量。在细胞外Ca2+突然变化后,对经α-毒素处理的细胞束中fura 2荧光比值(340/380)的测量表明,细胞对Ca-EGTA并非自由通透。在经β-七叶皂苷处理的细胞中进行的类似实验表明,细胞对Ca-EGTA的通透性更高。这些实验表明,在经α-毒素和β-七叶皂苷处理的纤维中必须格外小心,以确保细胞内的ATP、ADP和Ca2+保持恒定。