Sugiyama T, Goldman W F
Department of Physiology, University of Maryland School of Medicine, Baltimore, USA.
Am J Physiol. 1995 Sep;269(3 Pt 1):C698-705. doi: 10.1152/ajpcell.1995.269.3.C698.
The concentrations of intrasarcoplasmic reticulum (SR) free Ca2+ ([Ca2+]SR) and Mg2+ ([Mg2+]SR) were measured in furaptra-loaded saponin-permeabilized cultured aortic smooth muscle (A7r5) cells. Ca(2+)-independent fluorescence emitted by furaptra trapped within organelles, excited at 346 nm (isosbestic point), decreased with a half time of 30 min. All Ca2+ measurements appeared to be from SR, because the apparent Ca2+ distribution within permeabilized cells was uniform and therefore inconsistent with furaptra loading into mitochondria. Moreover, thapsigargin-induced SR Ca(2+)-adenosinetriphosphatase inhibition caused near-total depletion of Ca2+, and the metabolic poisons oligomycin and rotenone had no effect. Calibration curves relating 370 nm-to-346 nm ratios to [Ca2+] and to [Mg2+] were calculated in situ; dissociation constants for Ca2+ and Mg2+ binding were 49 microM and 6.8 mM, respectively. Resting [Ca2+]SR was 75-130 microM, with a mean of 97.2 +/- 2.2 microM (n = 376), whereas [Mg2+]SR, estimated in the absence of Ca2+, was 1.0 mM. Stimulation with inositol 1,4,5-trisphosphate resulted in time-dependent declines in [Ca2+]SR, and pretreatment with guanosine 5'-triphosphate caused a large increase in the rate of inositol 1,4,5-trisphosphate-evoked SR Ca2+ release, although guanosine 5'-triphosphate had no effect by itself. These observations indicate that furaptra will be a valuable tool with which to directly study [Ca2+]SR and SR function.
在装载了氟罗帕嗪的皂角苷通透培养的主动脉平滑肌(A7r5)细胞中测量肌浆网(SR)游离Ca2+([Ca2+]SR)和Mg2+([Mg2+]SR)的浓度。被困在细胞器内的氟罗帕嗪在346 nm(等吸收点)激发产生的与Ca2+无关的荧光,以30分钟的半衰期下降。所有Ca2+测量似乎都来自SR,因为通透细胞内的表观Ca2+分布是均匀的,因此与氟罗帕嗪加载到线粒体中不一致。此外,毒胡萝卜素诱导的SR Ca2+ - 腺苷三磷酸酶抑制导致Ca2+几乎完全耗尽,而代谢毒物寡霉素和鱼藤酮没有影响。原位计算了将370 nm与346 nm的比率与[Ca2+]和[Mg2+]相关的校准曲线;Ca2+和Mg2+结合的解离常数分别为49 μM和6.8 mM。静息[Ca2+]SR为75 - 130 μM,平均值为97.2±2.2 μM(n = 376),而在不存在Ca2+的情况下估计的[Mg2+]SR为1.0 mM。用肌醇1,4,5 - 三磷酸刺激导致[Ca2+]SR随时间下降,用鸟苷5'-三磷酸预处理导致肌醇1,4,5 - 三磷酸诱发的SR Ca2+释放速率大幅增加,尽管鸟苷5'-三磷酸本身没有作用。这些观察结果表明,氟罗帕嗪将是直接研究[Ca2+]SR和SR功能的有价值工具。