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内酯和非内酯化合物对小鼠和人香豆素7-羟化酶(CYP2A5和CYP2A6)的抑制效力存在显著差异。

Pronounced differences in inhibition potency of lactone and non-lactone compounds for mouse and human coumarin 7-hydroxylases (CYP2A5 and CYP2A6).

作者信息

Juvonen R O, Gynther J, Pasanen M, Alhava E, Poso A

机构信息

Department of Pharmacology, University of Kuopio, Finland.

出版信息

Xenobiotica. 2000 Jan;30(1):81-92. doi: 10.1080/004982500237848.

Abstract
  1. The structural requirements for a compound to be a potent inhibitor for mouse CYP2A5 and human CYP2A6 enzymes catalysing coumarin 7-hydroxylase activity have been studied. 2. The IC50 of 28 compounds for the pyrazole-treated male DBA/2 mouse and human liver microsomal coumarin 7-hydroxylation were determined at 10 microm coumarin concentration 15 times over Km of coumarin. 3. The three most potent inhibitors for CYP2A5 were gamma-nonanoic lactone, gamma-decanolactone and gamma-phenyl-gamma-butyrolactone with an IC50 = 1.9+/-0.4, 2.1+/-0.2 and 2.4+/-0.3 microM and for CYP2A67-methylcoumarin, butylcyclohexane and indan with an IC50. = 30+/-3.2, 43+/-9 and 50+/-11 microM. 4. Among the 28 compounds studied, only 2-benzoxazolinone, 2-indanone and gamma-valerolactone showed similar inhibitory activity in both species. Indan had a lower IC50 for human than for mouse coumarin 7-hydroxylation, whereas the IC50 of 24 other compounds was higher for human than for mouse coumarin 7-hydroxylation. 5. The largest difference in IC50 between mouse and human activity was observed with 5-substituted phenyl, pentyl, hexyl, heptyl or octyl gamma-lactones or 6-substituted delta-lactones. IC50 of gamma-undecanolactone and gamma-decanolactone was 500 times lower for mouse than human coumarin 7-hydroxylation. 6. The difference in the IC50 between human and mouse coumarin 7-hydroxylation decreased substantially with the corresponding compounds without the lactone ring. 7. It is concluded that certain 5- or 6-position substituted gamma- and delta-lactones are potent inhibitors for mouse CYP2A5 but not for the orthologous human CYP2A6 and that the active site of CYP2A6 could be smaller than the active site of CYP2A5.
摘要
  1. 已对一种化合物成为催化香豆素7-羟化酶活性的小鼠CYP2A5和人CYP2A6酶的强效抑制剂的结构要求进行了研究。2. 在香豆素浓度为10微摩尔(是香豆素Km的15倍)的条件下,测定了28种化合物对经吡唑处理的雄性DBA/2小鼠和人肝微粒体香豆素7-羟化反应的IC50。3. 对CYP2A5最有效的三种抑制剂是γ-壬内酯、γ-癸内酯和γ-苯基-γ-丁内酯,其IC50分别为1.9±0.4、2.1±0.2和2.4±0.3微摩尔;对CYP2A6最有效的三种抑制剂是7-甲基香豆素、丁基环己烷和茚满,其IC50分别为30±3.2、43±9和50±11微摩尔。4. 在研究的28种化合物中,只有2-苯并恶唑啉酮、2-茚满酮和γ-戊内酯在两种物种中表现出相似的抑制活性。茚满对人香豆素7-羟化反应的IC50低于对小鼠的,而其他24种化合物对人香豆素7-羟化反应的IC50高于对小鼠的。5. 在5-取代苯基、戊基、己基、庚基或辛基γ-内酯或6-取代δ-内酯中观察到小鼠和人活性之间IC50的最大差异。γ-十一烷内酯和γ-癸内酯对小鼠香豆素7-羟化反应的IC50比对人低500倍。6. 对于没有内酯环的相应化合物,人和小鼠香豆素7-羟化反应之间IC50的差异大幅降低。7. 得出的结论是,某些5-或6-位取代的γ-和δ-内酯是小鼠CYP2A5的强效抑制剂,但不是直系同源人CYP2A6的强效抑制剂,并且CYP2A6的活性位点可能比CYP2A5的活性位点小。

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