Chen H, Noble F, Coric P, Fournie-Zaluski M C, Roques B P
Département de Pharmacochimie Moléculaire et Structurale, U 266 Institut National de la Santé et de la Recherche Médicale-Unité,de Paris, France.
Proc Natl Acad Sci U S A. 1998 Sep 29;95(20):12028-33. doi: 10.1073/pnas.95.20.12028.
Inhibition of aminopeptidase N and neutral endopeptidase-24.11, two zinc metallopeptidases involved in the inactivation of the opioid peptides enkephalins, produces potent physiological analgesic responses, without major side-effects, in all animal models of pain in which morphine is active. Dual inhibitors of both enzymes could fill the gap between opioid analgesics and antalgics. Until now, attempts to find a compound with high affinity both for neutral endopeptidase and aminopeptidase N have failed. We report here the design of dual competitive inhibitors of both enzymes with KI values in the nanomolar range. These have been obtained by selecting R1, R2, and R3 determinants in aminophosphinic-containing inhibitors: NH2---CH(R1)P(O)---(OH)CH2---CH(R2)CONH---CH(R3)COOH, for optimal recognition of the two enkephalin inactivating enzymes, whose active site peculiarities, determined by site-directed mutagenesis, have been taken into account. The best inhibitors were 10x more potent than described dual inhibitors in alleviating acute and inflammatory nociceptive stimuli in mice, thus providing a basis for the development of a family of analgesics devoid of opioid side effects.
氨肽酶N和中性内肽酶-24.11是参与阿片肽脑啡肽失活的两种锌金属肽酶,在吗啡发挥作用的所有疼痛动物模型中,抑制这两种酶可产生有效的生理镇痛反应,且无主要副作用。这两种酶的双重抑制剂可填补阿片类镇痛药和镇痛药之间的空白。到目前为止,寻找对中性内肽酶和氨肽酶N都具有高亲和力的化合物的尝试均告失败。我们在此报告了这两种酶的双重竞争性抑制剂的设计,其抑制常数(KI)值在纳摩尔范围内。这些抑制剂是通过在含氨膦酸的抑制剂中选择R1、R2和R3决定簇获得的:NH2---CH(R1)P(O)---(OH)CH2---CH(R2)CONH---CH(R3)COOH,以实现对两种脑啡肽失活酶的最佳识别,同时考虑到通过定点诱变确定的这两种酶活性位点的特性。在减轻小鼠急性和炎性伤害性刺激方面,最佳抑制剂的效力比已报道的双重抑制剂强10倍,从而为开发一类无阿片类副作用的镇痛药奠定了基础。