Burlando B, Marchi B, Krüppel T, Orunesu M, Viarengo A
Dipartimento di Scienze e Tecnologie Avanzate, Università del Piemonte Orientale, Alessandria, Italy.
Cell Calcium. 1999 Feb;25(2):153-60. doi: 10.1054/ceca.1998.0014.
Ciliates possess diverse Ca2+ homeostasis systems, but little is known about the occurrence of a Na(+)-Ca2+ exchanger. We studied Na(+)-Ca2+ exchange in the ciliate Euplotes crassus by digital imaging. Cells were loaded with fura-2/AM or SBF1/AM for fluorescence measurements of cytosolic Ca2+ and Na+ respectively. Ouabain pre-treatment and Na+o substitution in fura-2/AM-loaded cells elicited a bepridil-sensitive [Ca2+]i rise followed by partial recovery, indicating the occurrence of Na(+)-Ca2+ exchanger working in reverse mode. In experiments on prolonged effects, ouabain, Na+o substitution, and bepridil all caused Ca2+o-dependent [Ca2+]i increase, showing a role for Na(+)-Ca2+ exchange in Ca2+ homeostasis. In addition, by comparing the effect of orthovanadate (affecting not only Ca2+ ATPase, but also Na(+)-K+ ATPase and, hence, Na(+)-Ca2+ exchange) to that of bepridil on [Ca2+]i, it was shown that Na(+)-Ca2+ exchange contributes to Ca2+ homeostasis. In electrophysiological experiments, no membrane potential variation was observed after bepridil treatment suggesting compensatory mechanisms for ion effects on cell membrane voltage, which also agrees with membrane potential stability after ouabain treatment. In conclusion, data indicate the presence of a Na(+)-Ca2+ exchanger in the plasma membrane of E. crassus, which is essential for Ca2+ homeostasis, but could also promote Ca2+ entry under specific conditions.
纤毛虫拥有多样的Ca2+稳态系统,但对于钠钙交换体的存在了解甚少。我们通过数字成像研究了厚尾真核生物中的钠钙交换。细胞分别用fura-2/AM或SBF1/AM加载,用于分别对胞质Ca2+和Na+进行荧光测量。在加载fura-2/AM的细胞中,哇巴因预处理和Na+o替代引发了对苄普地尔敏感的[Ca2+]i升高,随后部分恢复,表明存在反向工作的钠钙交换体。在长期效应实验中,哇巴因、Na+o替代和苄普地尔均导致Ca2+o依赖性的[Ca2+]i增加,表明钠钙交换在Ca2+稳态中发挥作用。此外,通过比较原钒酸盐(不仅影响Ca2+ ATP酶,还影响Na+-K+ ATP酶,进而影响钠钙交换)和苄普地尔对[Ca2+]i的影响,表明钠钙交换有助于Ca2+稳态。在电生理实验中,苄普地尔处理后未观察到膜电位变化,提示离子对细胞膜电压的影响存在补偿机制,这也与哇巴因处理后的膜电位稳定性一致。总之,数据表明厚尾真核生物质膜中存在钠钙交换体,它对Ca2+稳态至关重要,但在特定条件下也可能促进Ca2+内流。