首页> 外文期刊>The Journal of Physiology >Ca(2+) regulation in guinea-pig colonic smooth muscle: the role of the Na(+)-Ca(2+) exchanger and the sarcoplasmic reticulum.
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Ca(2+) regulation in guinea-pig colonic smooth muscle: the role of the Na(+)-Ca(2+) exchanger and the sarcoplasmic reticulum.

机译:Ca(2+)调节豚鼠结肠平滑肌:Na(+)-Ca(2+)交换子和肌浆网的作用。

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摘要

To study the contribution of the Na(+)-Ca(2+) exchanger to Ca(2+) regulation and its interaction with the sarcoplasmic reticulum (SR), changes in cytoplasmic Ca(2+) concentration ([Ca(2+)](c)) were measured in single, voltage clamped, smooth muscle cells. Increases in [Ca(2+)](c) were evoked by either depolarisation (-70 mV to 0 mV) or by release from the SR by caffeine (10 mM) or flash photolysis of caged InsP(3) (InsP(3)). Depletion of the SR of Ca(2+) (verified by the absence of a response to caffeine and InsP(3)) by either ryanodine (50 microM), to open the ryanodine receptors (RyRs), or thapsigargin (500 nM) or cyclopiazonic acid (CPA, 10 microM), to inhibit the SR Ca(2+) pumps, reduced neither the magnitude of the Ca(2+) transient nor the relationship between the influx of and the rise in [Ca(2+)](c) evoked by depolarisation. This suggested that Ca(2+)-induced Ca(2+) release (CICR) from the SR did not contribute significantly to the depolarisation-evoked rise in [Ca(2+)](c). However, although Ca(2+) was not released from it, the SR accumulated the ion following depolarisation since ryanodine and thapsigargin each slowed the rate of decline of the depolarisation-evoked Ca(2+) transient. Indeed, the SR Ca(2+) content increased following depolarisation as assessed by the increased magnitude of the [Ca(2+)](c) levels evoked each by InsP(3) and caffeine, relative to controls. The increased SR Ca(2+) content following depolarisation returned to control values in approximately 12 min via Na(+)-Ca(2+) exchanger activity. Thus inhibition of the Na(+)-Ca(2+) exchanger by removal of external Na(+) (by either lithium or choline substitution) prevented the increased SR Ca(2+) content from returning to control levels. On the other hand, the Na(+)-Ca(2+) exchanger did not appear to regulate bulk average Ca(2+) directly since the rates of decline in [Ca(2+)](c), following either depolarisation or the release of Ca(2+) from the SR (by either InsP(3) or caffeine), were neither voltage nor Na(+) dependent. Thus, no evidence for short term (seconds) control of [Ca(2+)](c) by the Na(+)-Ca(2+) exchanger was found. Together, the results suggest that despite the lack of CICR, the SR removes Ca(2+) from the cytosol after its elevation by depolarisation. This Ca(2+) is then removed from the SR to outside the cell by the Na(+)-Ca(2+) exchanger. However, the exchanger does not contribute significantly to the decline in bulk average [Ca(2+)](c) following transient elevations in the ion produced either by depolarisation or by release from the store.
机译:要研究Na(+)-Ca(2+)交换剂对Ca(2+)调节及其与肌浆网(SR)相互作用,细胞质Ca(2+)浓度([Ca(2+ )](c))在单个电压钳制的平滑肌细胞中进行测量。 [Ca(2 +)](c)的增加是通过去极化(-70 mV至0 mV)或通过咖啡因(10 mM)或从笼内InsP(3)(InsP(3 ))。 ryanodine(50 microM),以打开ryanodine受体(RyRs)或thapsigargin(500 nM)来消除Ca(2+)的SR(通过对咖啡因和InsP(3)的反应的缺失来验证)以打开ryanodine受体(RyRs)或thapsigargin(500 nM)或环吡嗪酸(CPA,10 microM),以抑制SR Ca(2+)泵,既不减少Ca(2+)瞬变的幅度,也未减少[Ca(2+)]的流入与上升之间的关系。 (c)由去极化引起。这表明从SR的Ca(2+)诱导Ca(2+)释放(CICR)不会对[Ca(2 +)](c)的去极化诱发的升高做出显着贡献。但是,尽管没有从中释放Ca(2+),但SR在去极化后会积聚离子,因为ryanodine和thapsigargin各自减慢了去极化诱发的Ca(2+)瞬态的下降速率。确实,相对于对照,InsP(3)和咖啡因分别诱发的[Ca(2 +)](c)水平升高的幅度评估了去极化后SR Ca(2+)含量的增加。去极化后增加的SR Ca(2+)含量通过Na(+)-Ca(2+)交换活性在大约12分钟内恢复到控制值。因此,通过去除外部Na(+)(通过锂或胆碱取代)来抑制Na(+)-Ca(2+)交换子可防止增加的SR Ca(2+)含量恢复到控制水平。另一方面,Na(+)-Ca(2+)交换剂似乎没有直接调节体积平均Ca(2+),因为在任一去极化后[Ca(2 +)](c)的下降速率或从SR释放Ca(2 +)(通过InsP(3)或咖啡因),都不依赖电压或Na(+)。因此,没有找到Na(+)-Ca(2+)交换剂对[Ca(2 +)](c)进行短期(秒)控制的证据。在一起,结果表明,尽管缺乏CICR,SR通过去极化升高后从细胞质中去除了Ca(2+)。然后,通过Na(+)-Ca(2+)交换剂将此Ca(2+)从SR移至细胞外。但是,在通过去极化或从存储中释放而产生的离子瞬变升高之后,交换器对体积平均[Ca(2 +)](c)的下降没有明显贡献。

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