Magro A M, Cragoe E J, Hurtado I, Rudofsky U H
Int Arch Allergy Appl Immunol. 1983;72(1):41-5. doi: 10.1159/000234838.
Ethacrynic acid is an inhibitor of Ca2+-Mg2+-activated ATPases which also inhibits histamine release. By testing analogs of ethacrynic acid, the molecular structural requirements for ATPase inhibition and for inhibition of histamine release were compared. The results indicated that effective inhibition involves several structural features of the molecule. Analogs void of chlorine atoms were ineffective as inhibitors of histamine release and ATPase activity. Inhibition of both ATPase and histamine release requires a sulfhydryl-reactive olefinic bond, but sulfhydryl reactivity alone is not sufficient, as certain analogs which have a high capacity to react with sulfhydryl moieties were not active. Replacement of carboxy by highly ionized moieties like sulfo, rendered the molecules ineffective as an inhibitor of histamine release. Compounds which did not inhibit ATPase activity did not inhibit histamine release. The data indicate that mast cells and basophils require an intact ATPase system for histamine release, and raises the question of whether both ecto and endo ATPases are essential.
依他尼酸是一种钙镁激活的ATP酶抑制剂,它也能抑制组胺释放。通过测试依他尼酸的类似物,比较了ATP酶抑制和组胺释放抑制的分子结构要求。结果表明,有效的抑制作用涉及分子的几个结构特征。不含氯原子的类似物作为组胺释放和ATP酶活性的抑制剂无效。ATP酶和组胺释放的抑制都需要一个巯基反应性烯键,但仅巯基反应性是不够的,因为某些与巯基部分反应能力高的类似物没有活性。用磺酸等高电离部分取代羧基,使分子作为组胺释放抑制剂无效。不抑制ATP酶活性的化合物不抑制组胺释放。数据表明,肥大细胞和嗜碱性粒细胞组胺释放需要完整的ATP酶系统,并提出了细胞外和细胞内ATP酶是否都必不可少的问题。