首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >The effects of ATP and alphabeta-methylene-ATP on cytosolic Ca2+ level and force in rat isolated aorta.
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The effects of ATP and alphabeta-methylene-ATP on cytosolic Ca2+ level and force in rat isolated aorta.

机译:ATP和αβ-亚甲基-ATP对大鼠离体主动脉中胞质Ca2 +水平和受力的影响。

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摘要

1. The effects of a non-selective P2-receptor agonist ATP and a selective P2x-receptor agonist alpha,beta-methylene-ATP on intracellular free Ca2+ level ([Ca2+]i) and force were examined in rat isolated aorta without endothelium. 2. Both ATP (1-1000 microM) and alpha,beta-methylene-ATP (0.1-100 microM) induced transient increase followed by small sustained increase in [Ca2+]i in a concentration-dependent manner. Compared with the force induced by a high concentration of KCl, the force induced by alpha,beta-methylene-ATP was smaller and that induced by ATP was much smaller at a given [Ca2+]i. 3. An L-type Ca2+ channel blocker, verapamil (10 microM), completely inhibited the high K(+)-stimulated [Ca2+]i and force. Verapamil partially inhibited the transient and sustained increases in [Ca2+]i induced by 10 microM alpha,beta-methylene-ATP and the sustained increase but not the transient increase induced by 1 mM ATP. 4. In the absence of extracellular Ca2+ (with 0.5 mM EGTA) 1 mM ATP caused transient increase in [Ca2+]i while 10 microM alpha,beta-methylene-ATP was ineffective 5. ATP, but not alpha,beta-methylene-ATP, increased the tissue adenosine 3':5'-cyclic monophosphate (cyclic AMP) level. 6. These data suggest that ATP and alpha,beta-methylene-ATP increase [Ca2+]i by an activation of both L-type and non-L-type Ca2+ channels. In addition, ATP, but not alpha,beta-methylene-ATP, increases [Ca2+]i by a release of Ca2+ from an intracellular Ca2+ store. Possible reasons are discussed as to why the increase in [Ca2+]i due to ATP and alpha,beta-methylene-ATP resulted in only a small contraction.
机译:1.在没有内皮的大鼠离体主动脉中,研究了非选择性P2受体激动剂ATP和选择性P2x受体激动剂α,β-亚甲基-ATP对细胞内游离Ca2 +水平([Ca2 +] i)的影响。 2. ATP(1-1000 microM)和α,β-亚甲基-ATP(0.1-100 microM)诱导瞬时增加,然后以浓度依赖的方式使[Ca2 +] i持续少量增加。与高浓度氯化钾引起的力相比,在给定的[Ca2 +] i下,α,β-亚甲基-ATP引起的力较小,而ATP引起的力则小得多。 3. L型Ca2 +通道阻滞剂维拉帕米(10 microM)完全抑制了高K(+)刺激的[Ca2 +] i和作用力。维拉帕米部分抑制了由10 microMα,β-亚甲基-ATP诱导的[Ca2 +] i的瞬时和持续增加,但抑制了1 mM ATP诱导的持续增加,但没有抑制。 4.在缺少细胞外Ca2 +(含0.5 mM EGTA)的情况下,1 mM ATP导致[Ca2 +] i瞬时增加,而10 microMα,β-亚甲基-ATP无效5. ATP,但不是α,β-亚甲基-ATP ,增加了组织腺苷3':5'-环一磷酸(环AMP)的水平。 6.这些数据表明,ATP和α,β-亚甲基-ATP通过激活L型和非L型Ca2 +通道而增加[Ca2 +] i。另外,ATP通过从细胞内Ca2 +存储中释放Ca2 +来增加[Ca2 +] i,而不是α,β-亚甲基-ATP。讨论了可能的原因,即为什么由于ATP和α,β-亚甲基-ATP导致[Ca2 +] i的增加仅导致很小的收缩。

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