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细胞内阳离子调节去甲肾上腺素刺激的钙离子进入大鼠门静脉平滑肌细胞。

Intracellular cations modulate noradrenaline-stimulated calcium entry into smooth muscle cells of rat portal vein.

作者信息

Pacaud P, Loirand G, Bolton T B, Mironneau C, Mironneau J

机构信息

Laboratorie de Physiologie Cellulaire et Pharmacologie Moléculaire, URA CNRS 1489, Bordeaux, France.

出版信息

J Physiol. 1992 Oct;456:541-56. doi: 10.1113/jphysiol.1992.sp019352.

Abstract
  1. The action of noradrenaline (NA, 10 microM) was studied in single patch-clamped smooth muscle cells of rat portal vein where free internal Ca2+ concentration in the cell (Ca2+i) was estimated using the emission from the dye Indo-1. 2. In the presence of 50 microM D600, a blocker of voltage-dependent Ca2+ channels, NA applied to the cell evoked an initial peak in Ca2+i followed by a smaller sustained rise. The initial rise in Ca2+i was associated with the activation of Ca(2+)-dependent Cl- channels. 3. The maintained rise in Ca2+i induced by NA was enhanced by increasing the external Ca2+ concentration and was abolished in Ca(2+)-free solution. The transient rise was resistant to the absence of external Ca2+. 4. Following the transient rise in Ca2+i induced by NA, the mechanisms extruding and/or sequestering cytoplasmic Ca2+ were stimulated. This stimulation was measured during the sustained rise in Cai and was maintained for a few seconds after NA was removed. 5. Unlike the transient rise in Ca2+i, the sustained rise in Ca2+i produced by NA was affected by changing the cell membrane potential. 6. Changing the Na+ gradient showed that the Na(+)-Ca2+ exchange was not involved in the sustained rise in Ca2+i. 7. The sustained increase in Ca2+i produced by NA was modulated by intracellular cations. This phase could be observed with 130 mM Na+ or 130 mM K+ in the pipette solution, but was severely reduced when the only cation in the intracellular solution was Cs+ and abolished with NMDG (N-methyl-D-glucamine) or TEA. However, inclusion of only 10 mM Na+ or 50 mM K+ in the pipette solution was sufficient to obtain a sustained rise in Ca2+i of maximal amplitude, similar to that obtained with 130 mM Na+i or 130 mM K+i during NA application. 8. In portal vein smooth muscle cells, NA induced a two-phase increase in Ca2+i similar to the two phases which have been previously observed upon muscarinic receptor activation by carbachol in intestinal smooth muscle. The transient rise was due to Ca2+ store release whereas the sustained rise was due to an increased Ca2+ entry into the cell down its electrochemical gradient, but not through voltage-dependent Ca2+ channels. The Ca2+ permeability pathway involved in the sustained rise in Ca2+i induced by NA was modulated by the intracellular cations.
摘要
  1. 在大鼠门静脉的单个膜片钳制平滑肌细胞中研究了去甲肾上腺素(NA,10微摩尔)的作用,其中使用荧光染料Indo-1的发射来估计细胞内游离钙离子浓度(Ca2+i)。2. 在存在50微摩尔D600(一种电压依赖性钙通道阻滞剂)的情况下,施加于细胞的NA引起Ca2+i的初始峰值,随后是较小的持续升高。Ca2+i的初始升高与钙依赖性氯通道的激活有关。3. NA诱导的Ca2+i持续升高通过增加细胞外钙离子浓度而增强,并在无钙溶液中消失。短暂升高不受细胞外无钙的影响。4. 在NA诱导的Ca2+i短暂升高之后,挤出和/或隔离细胞质钙离子的机制被刺激。这种刺激在Cai的持续升高期间进行测量,并在去除NA后维持几秒钟。5. 与Ca2+i的短暂升高不同,NA产生的Ca2+i持续升高受细胞膜电位变化的影响。6. 改变钠离子梯度表明,钠-钙交换不参与Ca2+i的持续升高。7. NA产生的Ca2+i持续增加受细胞内阳离子调节。在移液管溶液中含有130毫摩尔钠离子或130毫摩尔钾离子时可观察到这一阶段,但当细胞内溶液中唯一的阳离子是铯离子时,该阶段会严重减少,而用N-甲基-D-葡萄糖胺(NMDG)或四乙铵(TEA)则会消除。然而,在移液管溶液中仅包含10毫摩尔钠离子或50毫摩尔钾离子就足以获得最大幅度的Ca2+i持续升高,类似于在施加NA期间用130毫摩尔钠离子或130毫摩尔钾离子获得的升高。8. 在门静脉平滑肌细胞中,NA诱导Ca2+i出现两相增加,类似于先前在肠平滑肌中卡巴胆碱激活毒蕈碱受体时观察到的两个阶段。短暂升高是由于钙库释放,而持续升高是由于钙离子顺着其电化学梯度进入细胞增加,但不是通过电压依赖性钙通道。NA诱导的Ca2+i持续升高所涉及的钙通透性途径受细胞内阳离子调节。

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