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2-氨基-4-甲基吡啶作为一种在体外和体内对诱导型一氧化氮合酶活性有强效抑制作用的物质。

2-Amino-4-methylpyridine as a potent inhibitor of inducible NO synthase activity in vitro and in vivo.

作者信息

Faraci W S, Nagel A A, Verdries K A, Vincent L A, Xu H, Nichols L E, Labasi J M, Salter E D, Pettipher E R

机构信息

Central Research Division, Pfizer Inc., Groton, Connecticut 06340, USA.

出版信息

Br J Pharmacol. 1996 Nov;119(6):1101-8. doi: 10.1111/j.1476-5381.1996.tb16010.x.

DOI:10.1111/j.1476-5381.1996.tb16010.x
PMID:8937711
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1915898/
Abstract
  1. The ability of 2-amino-4-methylpyridine to inhibit the catalytic activity of the inducible NO synthase (NOS II) enzyme was characterized in vitro and in vivo. 2. In vitro, 2-amino-4-methylpyridine inhibited NOS II activity derived from mouse RAW 264.7 cells with an IC50 of 6 nM. Enzyme kinetic studies indicated that inhibition is competitive with respect to arginine. 2-Amino-4-methylpyridine was less potent on human recombinant NOS II (IC50 = 40 nM) and was still less potent on human recombinant NOS I and NOS III (IC50 = 100 nM). NG-monomethyl-L-arginine (L-NMMA), N6-iminoethyl-L-lysine (L-NIL) and aminoguanidine were much weaker inhibitors of murine NOS II than 2-amino-4-methylpyridine but, unlike 2-amino-4-methylpyridine, retained similar activity on human recombinant NOS II. L-NMMA inhibited all three NOS isoforms with similar potency (IC50S 3-7 microM). In contrast, compared to activity on human recombinant NOS III, L-NIL displayed 10 x selectivity for murine NOS II and 11 x selectivity for human recombinant NOS II while aminoguanidine displayed 7.3 x selectivity for murine NOS II and 3.7 x selectivity for human recombinant NOS II. 3. Mouse RAW 264.7 macrophages produced high levels of nitrite when cultured overnight in the presence of lipopolysaccharide (LPS) and interferon-gamma. Addition of 2-amino-4-methylpyridine at the same time as the LPS and IFN-gamma, dose-dependently reduced the levels of nitrite (IC50 = 1.5 microM) without affecting the induction of NOS II protein. Increasing the extracellular concentration of arginine decreased the potency of 2-amino-4-methylpyridine but at concentrations up to 10 microM, 2-amino-4-methylpyridine did not inhibit the uptake of [3H]-arginine into the cell. Addition of 2-amino-4-methylpyridine after the enzyme was induced also dose-dependently inhibited nitrite production. Together, these data suggest that 2-amino-4-methylpyridine reduces cellular production of NO by competitive inhibition of the catalytic activity of NOS II, in agreement with results obtained from in vitro enzyme kinetic studies. 4. When infused i.v. in conscious unrestrained rats, 2-amino-4-methylpyridine inhibited the rise in plasma nitrate produced in response to intraperitoneal injection of LPS (ID50 = 0.009 mg kg-1 min-1). Larger doses of 2-amino-4-methylpyridine were required to raise mean arterial pressure in untreated conscious rats (ED50 = 0.060 mg kg-1 min-1) indicating 6.9 x selectivity for NOS II over NOS III in vivo. Under the same conditions, L-NMMA was nonselective while L-NIL and aminoguanidine displayed 5.2 x and 8.6 x selectivity respectively. All of these compounds caused significant increases in mean arterial pressure at doses above the ID50 for inhibition of NOS II activity in vivo. 5. 2-Amino-4-methylpyridine also inhibited LPS-induced elevation in plasma nitrate after either subcutaneous (ID50 = 0.3 mg kg-1) or oral (ID50 = 20.8 mg kg-1) administration. 6. These data indicate that 2-amino-4-methylpyridine is a potent inhibitor of NOS II activity in vitro and in vivo with a similar degree of isozyme selectivity to that of L-NIL and aminoguanidine in rodents.
摘要
  1. 对2-氨基-4-甲基吡啶抑制诱导型一氧化氮合酶(NOS II)催化活性的能力进行了体外和体内研究。2. 在体外,2-氨基-4-甲基吡啶抑制源自小鼠RAW 264.7细胞的NOS II活性,IC50为6 nM。酶动力学研究表明,该抑制作用对精氨酸具有竞争性。2-氨基-4-甲基吡啶对人重组NOS II的抑制作用较弱(IC50 = 40 nM),对人重组NOS I和NOS III的抑制作用更弱(IC50 = 100 nM)。NG-单甲基-L-精氨酸(L-NMMA)、N6-亚氨基乙基-L-赖氨酸(L-NIL)和氨基胍对小鼠NOS II的抑制作用比2-氨基-4-甲基吡啶弱得多,但与2-氨基-4-甲基吡啶不同的是,它们对人重组NOS II保持相似的活性。L-NMMA对所有三种NOS同工型的抑制作用效力相似(IC50为3 - 7 microM)。相比之下,与对人重组NOS III的活性相比,L-NIL对小鼠NOS II的选择性为10倍,对人重组NOS II的选择性为11倍,而氨基胍对小鼠NOS II的选择性为7.3倍,对人重组NOS II的选择性为3.7倍。3. 当在脂多糖(LPS)和干扰素-γ存在下将小鼠RAW 264.7巨噬细胞培养过夜时,会产生高水平的亚硝酸盐。与LPS和IFN-γ同时添加2-氨基-4-甲基吡啶,剂量依赖性地降低了亚硝酸盐水平(IC50 = 1.5 microM),而不影响NOS II蛋白的诱导。增加细胞外精氨酸浓度会降低2-氨基-4-甲基吡啶的效力,但在浓度高达10 microM时,2-氨基-4-甲基吡啶不抑制[3H]-精氨酸进入细胞。在酶诱导后添加2-氨基-4-甲基吡啶也剂量依赖性地抑制亚硝酸盐产生。这些数据共同表明,2-氨基-4-甲基吡啶通过竞争性抑制NOS II的催化活性来降低细胞内NO的产生,这与体外酶动力学研究结果一致。4. 当对清醒不受约束的大鼠进行静脉注射时,2-氨基-4-甲基吡啶抑制腹腔注射LPS后血浆硝酸盐的升高(ID50 = 0.009 mg kg-1 min-1)。在未处理的清醒大鼠中,需要更大剂量的2-氨基-4-甲基吡啶才能升高平均动脉压(ED50 = 0.060 mg kg-1 min-1),表明在体内对NOS II的选择性比对NOS III高6.9倍。在相同条件下,L-NMMA无选择性,而L-NIL和氨基胍的选择性分别为5.2倍和8.6倍。在体内,所有这些化合物在剂量高于抑制NOS II活性的ID50时都会导致平均动脉压显著升高。5. 2-氨基-4-甲基吡啶在皮下(ID50 = 0.3 mg kg-1)或口服(ID50 = 20.8 mg kg-1)给药后也抑制LPS诱导的血浆硝酸盐升高。6. 这些数据表明,2-氨基-4-甲基吡啶在体外和体内都是NOS II活性的有效抑制剂,在啮齿动物中对同工酶的选择性程度与L-NIL和氨基胍相似。

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