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Ba2+诱导兔肠系膜动脉平滑肌细胞收缩的机制。

Mechanisms of the Ba2+-induced contraction in smooth muscle cells of the rabbit mesenteric artery.

作者信息

Satoh S, Kubota Y, Itoh T, Kuriyama H

出版信息

J Gen Physiol. 1987 Feb;89(2):215-37. doi: 10.1085/jgp.89.2.215.

Abstract

The mechanism of the Ba2+-induced contraction was investigated using intact and saponin-treated skinned smooth muscle (skinned muscle) strips of the rabbit mesenteric artery. After depletion of Ca2+ stored in the caffeine-sensitive site, greater than 0.65 mM Ba2+ evoked contraction in muscle strips depolarized with 128 mM K+ in Ca2+-free solution in a dose-dependent fashion, and the ED50 values for Ca2+ and Ba2+ were 0.5 mM and 1.2 mM in intact muscle strips, respectively. Nisoldipine (10 nM) blocked the contraction evoked by high K+ or 10 microM norepinephrine (NE) in the presence of 2.6 mM Ba2+, but did not block the contraction evoked in the presence of 2.6 mM Ca2+. These results may indicate that Ba2+ permeates the voltage-dependent Ca2+ channel. In skinned muscle strips, the ED50 values for Ca2+ and Ba2+ were 0.34 and 90 microM, respectively, as estimated from the pCa- and pBa-tension relationships. Calmodulin enhanced and trifluoperazine inhibited the Ba2+- and Ca2+-induced contractions. After the application of Ba2+ or Ca2+ with ATP gamma S in rigor solution, myosin light chain (MLC) was irreversibly thiophosphorylated, as estimated from the Ba2+- or Ca2+-independent contraction. Furthermore, both divalent cations phosphorylated MLC, as measured using two-dimensional gel electrophoresis, to the extent expected from the amplitudes of the contraction evoked by these cations. Thus, Ba2+ is capable of activating the contractile proteins as Ca2+ does. The amount of Ca2+ or Ba2+ stored in cells was estimated from the caffeine response evoked in Ca2+-free solution in intact and skinned muscle strips. After the application of 0.3 microM Ca2+ or 0.1 mM Ba2+ for 60 s to skinned muscle strips after the depletion of Ca2+ stored in cells, caffeine produced a contraction only upon pretreatment with Ca2+ but not with Ba2+. When Ba2+ was applied successively just after the application of Ca2+, the subsequently evoked caffeine-induced contraction was much smaller than that evoked by pretreatment with Ca2+ alone. The above results indicate that Ba2+ permeates the voltage-dependent Ca2+ channel but may not permeate the receptor-operated Ca2+ channel, it releases Ca2+ from store sites but is not accumulated into the store site, and it directly activates the contractile proteins via formation of a Ba2+-calmodulin complex.

摘要

利用兔肠系膜动脉完整和经皂角苷处理的去表皮平滑肌(去表皮肌)条,研究了Ba2 +诱导收缩的机制。在耗尽咖啡因敏感位点储存的Ca2 +后,大于0.65 mM的Ba2 +在无Ca2 +溶液中用128 mM K +去极化的肌条中以剂量依赖方式诱发收缩,完整肌条中Ca2 +和Ba2 +的ED50值分别为0.5 mM和1.2 mM。尼索地平(10 nM)在存在2.6 mM Ba2 +时阻断高K +或10 microM去甲肾上腺素(NE)诱发的收缩,但在存在2.6 mM Ca2 +时不阻断诱发的收缩。这些结果可能表明Ba2 +渗透电压依赖性Ca2 +通道。在去表皮肌条中,根据pCa-和pBa-张力关系估计,Ca2 +和Ba2 +的ED50值分别为0.34和90 microM。钙调蛋白增强而三氟拉嗪抑制Ba2 +和Ca2 +诱导的收缩。在强直溶液中用ATPγS施加Ba2 +或Ca2 +后,根据Ba2 +或Ca2 +非依赖性收缩估计,肌球蛋白轻链(MLC)被不可逆地硫代磷酸化。此外,使用二维凝胶电泳测量,两种二价阳离子都将MLC磷酸化至这些阳离子诱发收缩幅度所预期的程度。因此,Ba2 +能够像Ca2 +一样激活收缩蛋白。通过完整和去表皮肌条在无Ca2 +溶液中诱发的咖啡因反应估计细胞中储存的Ca2 +或Ba2 +量。在耗尽细胞中储存的Ca2 +后,向去表皮肌条施加0.3 microM Ca2 +或0.1 mM Ba2 + 60 s后,咖啡因仅在Ca2 +预处理后产生收缩,而Ba2 +预处理则不产生。当在施加Ca2 +后紧接着连续施加Ba2 +时,随后诱发的咖啡因诱导收缩比单独用Ca2 +预处理诱发的收缩小得多。上述结果表明,Ba2 +渗透电压依赖性Ca2 +通道,但可能不渗透受体操纵的Ca2 +通道,它从储存位点释放Ca2 +但不积累到储存位点,并且它通过形成Ba2 + -钙调蛋白复合物直接激活收缩蛋白。

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