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大脑中阳离子与二氢吡啶类钙拮抗剂结合位点的新型相互作用。

Novel interactions of cations with dihydropyridine calcium antagonist binding sites in brain.

作者信息

Bolger G T, Skolnick P

出版信息

Br J Pharmacol. 1986 Aug;88(4):857-66. doi: 10.1111/j.1476-5381.1986.tb16259.x.

Abstract

The effects of monovalent (Na+, Li+, K+, Rb+) and divalent (Ca2+, Mg2+, Mn2+) cations on dihydropyridine calcium antagonist binding sites in brain and cardiac membranes were investigated using a low ionic strength buffer (5 mM Tris-HCl, pH 7.4), and the dihydropyridine, [3H]-nitrendipine. At 25 degrees C, the monovalent cations Na+, Li+, and K+ (100 mM) but not Rb+ significantly decreased the apparent dissociation constant (KD) but had no effect on the maximum binding site capacity (Bmax) of [3H]-nitrendipine in brain. The divalent cations Ca2+, Mg2+, and Mn2+ (2 mM) significantly increased the Bmax, but did not affect the KD of [3H]-nitrendipine. The effects of cations were concentration-dependent (EC50 monovalent cations 10-25 mM; EC50 divalent cations 50-200 microM) and demonstrated brain region selectivity. The effect of Ca2+, but not Mg2+ or Mn2+ on [3H]-nitrendipine binding was described by a two-site model. At 25 degrees C, neither mono- nor divalent cations altered the characteristics of [3H]-nitrendipine binding to rat cardiac membranes. At 37 degrees C, Na+ (100 mM) but not K+ (100 mM) significantly increased the Bmax of [3H]-nitrendipine in rat brain membranes. Ca2+ (2 mM) significantly increased the Bmax of [3H]-nitrendipine binding to rat brain membranes to a greater extent than at 25 degrees C. Both Na+ and K+ had no effect on [3H]-nitrendipine binding to cardiac membranes, while Ca2+ (2 mM) significantly decreased the KD of [3H]-nitrendipine. It is suggested that the selective effects of mono- and divalent cations on [3H]-nitrendipine binding to rat brain and cardiac membranes may be associated with differences in the calcium current blocking activity of dihydropyridine calcium antagonists in brain and cardiac tissues.

摘要

使用低离子强度缓冲液(5 mM Tris-HCl,pH 7.4)和二氢吡啶类化合物[3H]-尼群地平,研究了单价阳离子(Na+、Li+、K+、Rb+)和二价阳离子(Ca2+、Mg2+、Mn2+)对脑和心肌膜中二氢吡啶类钙拮抗剂结合位点的影响。在25℃时,单价阳离子Na+、Li+和K+(100 mM)可显著降低[3H]-尼群地平在脑中的表观解离常数(KD),但对其最大结合位点容量(Bmax)无影响,而Rb+则无此作用。二价阳离子Ca2+、Mg2+和Mn2+(2 mM)可显著增加[3H]-尼群地平的Bmax,但不影响其KD。阳离子的作用呈浓度依赖性(单价阳离子的EC50为10 - 25 mM;二价阳离子的EC50为50 - 200 μM),且具有脑区选择性。Ca2+对[3H]-尼群地平结合的影响(而非Mg2+或Mn2+)可用双位点模型描述。在25℃时,单价和二价阳离子均未改变[3H]-尼群地平与大鼠心肌膜的结合特性。在37℃时,Na+(100 mM)可显著增加[3H]-尼群地平在大鼠脑膜中的Bmax,而K+(100 mM)则无此作用。Ca2+(2 mM)比在25℃时更显著地增加了[3H]-尼群地平与大鼠脑膜的结合Bmax。Na+和K+对[3H]-尼群地平与心肌膜的结合均无影响,而Ca2+(2 mM)可显著降低[3H]-尼群地平的KD。提示单价和二价阳离子对[3H]-尼群地平与大鼠脑和心肌膜结合的选择性作用可能与二氢吡啶类钙拮抗剂在脑和心脏组织中钙电流阻断活性的差异有关。

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本文引用的文献

4
Specific calcium antagonist binding sites in brain.大脑中的特异性钙拮抗剂结合位点。
Life Sci. 1982 Oct 11;31(15):1575-85. doi: 10.1016/0024-3205(82)90049-2.

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