NZ-105, a New 1,4-Dihydropyridine Derivative: Correlation between Dihydropyridine Receptor Binding and Inhibition of Calcium Uptake in Rabbit Aorta.
スポンサーリンク
概要
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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 <SUP>45</SUP>Ca<SUP>2+</SUP> uptake was investigated. <SUP>3</SUP>H-NZ-105 bound rabbit aortic microsomes more slowly than did <SUP>3</SUP>H-nitrendipine (<SUP>3</SUP>H-NTD): the association and dissociation rate constants of <SUP>3</SUP>H-NZ-105 were about 70 times and 10 times less than those of <SUP>3</SUP>H-NTD, respectively. The dissociation constant (K<SUB>d</SUB>) of <SUP>3</SUP>H-NZ-105 (4.48 nM) was about 6 times larger than that of <SUP>3</SUP>H-NTD (0.79 nM), and the maximum number of binding sites (B<SUB>max</SUB>) for <SUP>3</SUP>H-NZ-105 (112.5 fmoles/mg protein) was about the same as that for <SUP>3</SUP>H-NTD (106.2 fmoles/mg protein). Unlabelled NZ-105 and nicardipine fully, and in a concentration-dependent manner, displaced <SUP>3</SUP>H-NZ-105 specific binding. Pre-incubation with NZ-105 also concentration-dependently (more than 0.1 μM) inhibited the transmembrane <SUP>45</SUP>Ca<SUP>2+</SUP> uptake increment induced by a high-K<SUP>+</SUP> (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.
著者
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Kasuya Yutaka
Department Of Chemical Pharmacology Faculty Of Pharmaceutical Sciences The University Of Tokyo
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Tanaka Sakuya
Shiraoka Research Station Of Biological Science Nissan Chemical Industries Ltd.
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Masuda Yukinori
Shiraoka Research Station Of Biological Science Nissan Chemical Industries Ltd.
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YAMASHITA Toru
Shiraoka Research Station of Biological Science, Nissan Chemical Industries, Ltd.
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Yamashita Toru
Shiraoka Research Station Of Biological Science Nissan Chemical Industries Ltd.
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Sakai Toshinori
Shiraoka Research Station of Biological Science, Nissan Chemical Industries, Ltd.
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