Liu Zu D, Kayyali Reem, Hider Robert C, Porter John B, Theobald Anthony E
Department of Pharmacy, King's College London, Franklin-Wilkins Building, 150 Stamford Street, London SE1 9NN, UK.
J Med Chem. 2002 Jan 31;45(3):631-9. doi: 10.1021/jm010817i.
A range of novel 3-hydroxypyridin-4-ones with different R(2) substitutents has been synthesized for the investigation of the structure-activity relationship between the chemical nature of the ligand and the inhibitory activity of the iron-containing metalloenzyme 5-lipoxygenase. Results indicate that the molecular dimensions, together with the lipophilicity, have a critical impact on the ability of this class of chelator to inhibit 5-lipoxygenase. Hydrophilic ligands with a bulky R(2) substitutent tend to be weak inhibitors; thus 1,6-dimethyl-2-(4'-N-n-propylsuccinamido)methyl-3-hydroxypyridin-4(1H)-one (22b) which has the largest R(2) substitutent only caused 2% inhibition of the enzyme activity after 30 min incubation at 110 microM IBE (iron-binding equivalents), as compared with deferiprone which caused 40% inhibition of the enzyme activity, under the same conditions.
为了研究配体化学性质与含铁金属酶5-脂氧合酶抑制活性之间的构效关系,合成了一系列具有不同R(2)取代基的新型3-羟基吡啶-4-酮。结果表明,分子尺寸以及亲脂性对这类螯合剂抑制5-脂氧合酶的能力具有关键影响。具有庞大R(2)取代基的亲水性配体往往是弱抑制剂;因此,具有最大R(2)取代基的1,6-二甲基-2-(4'-N-正丙基琥珀酰胺基)甲基-3-羟基吡啶-4(1H)-酮(22b)在110 microM IBE(铁结合当量)下孵育30分钟后,仅导致该酶活性2%的抑制,而在相同条件下,去铁酮导致该酶活性40%的抑制。