Yanagisawa H, Ishihara S, Ando A, Kanazaki T, Miyamoto S, Koike H, Iijima Y, Oizumi K, Matsushita Y, Hata T
Chemical Research Laboratory, Sankyo Co., Ltd., Tokyo, Japan.
J Med Chem. 1987 Nov;30(11):1984-91. doi: 10.1021/jm00394a009.
alpha-[6-[[(S)-1-(Ethoxycarbonyl)-3-phenylpropyl]amino]-5-oxoperhydro -1,4-thiazepin-4-yl]acetic acids (monoester monoacids) and their dicarboxylic acids having the hydrophobic substituents at the 2- or 3-position of the thiazepinone ring were prepared and assayed for angiotensin-converting enzyme (ACE) inhibitory activity. The dicarboxylic acids having the pseudoequatorial amino groups at the 6-position and the pseudoequatorial hydrophobic substituents at the 2- or 3-position of the chair conformation of the thiazepinone ring had potent in vitro inhibitory activity. The monoester monoacids having the hydrophobic substituents at the 2-position suppressed pressor response to angiotensin I for a longer duration than those having the substituents at the 3-position when administered orally. The structure-activity relationship was studied by conformational energy calculations of the thiazepinone ring.
制备了α-[6-[[(S)-1-(乙氧羰基)-3-苯基丙基]氨基]-5-氧代全氢-1,4-噻氮杂环庚三烯-4-基]乙酸(单酯单酸)及其在噻氮杂环庚酮环的2-或3-位具有疏水取代基的二羧酸,并测定了它们的血管紧张素转换酶(ACE)抑制活性。在噻氮杂环庚酮环椅式构象的6-位具有假平伏氨基且在2-或3-位具有假平伏疏水取代基的二羧酸具有很强的体外抑制活性。当口服给药时,在2-位具有疏水取代基的单酯单酸比在3-位具有取代基的单酯单酸对血管紧张素I的升压反应抑制时间更长。通过噻氮杂环庚酮环的构象能量计算研究了构效关系。