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NZ-105,一种新型1,4-二氢吡啶衍生物:兔主动脉中二氢吡啶受体结合与钙摄取抑制之间的相关性

NZ-105, a new 1,4-dihydropyridine derivative: correlation between dihydropyridine receptor binding and inhibition of calcium uptake in rabbit aorta.

作者信息

Yamashita T, Masuda Y, Sakai T, Tanaka S, Kasuya Y

机构信息

Shiraoka Research Station of Biological Science, Nissan Chemical Industries, Ltd., Japan.

出版信息

Jpn J Pharmacol. 1991 Nov;57(3):337-48. doi: 10.1254/jjp.57.337.

Abstract

The correlation between the binding of NZ-105, a newly synthesized 1,4-dihydropyridine (DHP) derivative, on DHP receptors and its inhibitory activity on transmembrane 45Ca2+ uptake was investigated. 3H-NZ-105 bound rabbit aortic microsomes more slowly than did 3H-nitrendipine (3H-NTD): the association and dissociation rate constants of 3H-NZ-105 were about 70 times and 10 times less than those of 3H-NTD, respectively. The dissociation constant (Kd) of 3H-NZ-105 (4.48 nM) was about 6 times larger than that of 3H-NTD (0.79 nM), and the maximum number of binding sites (Bmax) for 3H-NZ-105 (112.5 fmoles/mg protein) was about the same as that for 3H-NTD (106.2 fmoles/mg protein). Unlabelled NZ-105 and nicardipine fully, and in a concentration-dependent manner, displaced 3H-NZ-105 specific binding. Pre-incubation with NZ-105 also concentration-dependently (more than 0.1 microM) inhibited the transmembrane 45Ca2+ uptake increment induced by a high-K+ (50 mM) solution. The inhibitory efficacy of NZ-105 became larger as the incubation period with this compound increased (from 1 hr incubation to 3 hr incubation), and recovery was difficult even after washout for 3 hr. Based on these results, we conclude that NZ-105 causes blockade of voltage-dependent calcium channels (VDCs) by binding to DHP receptors. Moreover, the very slow onset and recovery from NZ-105-induced vasodilation may be attributable to the slow and long-lasting inhibition of transmembrane calcium uptake, which accompanies its very slow binding to and dissociation from DHP receptors.

摘要

研究了新合成的1,4 - 二氢吡啶(DHP)衍生物NZ - 105与DHP受体的结合及其对跨膜45Ca2+摄取的抑制活性之间的相关性。3H - NZ - 105与兔主动脉微粒体的结合比3H - 尼群地平(3H - NTD)更慢:3H - NZ - 105的结合和解离速率常数分别比3H - NTD小约70倍和10倍。3H - NZ - 105的解离常数(Kd)(4.48 nM)比3H - NTD的解离常数(0.79 nM)大约6倍,3H - NZ - 105的最大结合位点数(Bmax)(112.5 fmol/mg蛋白质)与3H - NTD的最大结合位点数(106.2 fmol/mg蛋白质)大致相同。未标记的NZ - 105和尼卡地平以浓度依赖性方式完全取代3H - NZ - 105的特异性结合。用NZ - 105预孵育也以浓度依赖性方式(超过0.1 microM)抑制高钾(50 mM)溶液诱导的跨膜45Ca2+摄取增加。随着与该化合物孵育时间的增加(从孵育1小时到孵育3小时),NZ - 105的抑制效力变得更大,即使冲洗3小时后恢复也很困难。基于这些结果,我们得出结论,NZ - 105通过与DHP受体结合导致电压依赖性钙通道(VDC)的阻断。此外,NZ - 105诱导的血管舒张起效非常缓慢且恢复缓慢,这可能归因于跨膜钙摄取的缓慢且持久的抑制,这伴随着其与DHP受体的非常缓慢的结合和解离。

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