Kilunga Kubata Bruno, Inoue Tsuyoshi, Okano Yousuke, Kabututu Zakayi, Martin Samuel K, Lazarus Michael, Duszenko Michael, Sumii Yuichi, Kusakari Yukiko, Matsumura Hiroyoshi, Kai Yasushi, Sugiyama Shigeru, Inaka Kouji, Inui Takashi, Urade Yoshihiro
Department of Molecular Behavioral Biology, Osaka Bioscience Institute, 6-2-4 Furuedai, Suita, Osaka 565-0874, Japan.
J Biol Chem. 2005 Jul 15;280(28):26371-82. doi: 10.1074/jbc.M413884200. Epub 2005 Apr 21.
Trypanosoma brucei prostaglandin F2alpha synthase is an aldo-ketoreductase that catalyzes the reduction of prostaglandin H2 to PGF2alpha in addition to that of 9,10-phenanthrenequinone. We report the crystal structure of TbPGFS.NADP+.citrate at 2.1 angstroms resolution. TbPGFS adopts a parallel (alpha/beta)8-barrel fold lacking the protrudent loops and possesses a hydrophobic core active site that contains a catalytic tetrad of tyrosine, lysine, histidine, and aspartate, which is highly conserved among AKRs. Site-directed mutagenesis of the catalytic tetrad residues revealed that a dyad of Lys77 and His110, and a triad of Tyr52, Lys77, and His110 are essential for the reduction of PGH2 and 9,10-PQ, respectively. Structural and kinetic analysis revealed that His110, acts as the general acid catalyst for PGH2 reduction and that Lys77 facilitates His110 protonation through a water molecule, while exerting an electrostatic repulsion against His110 that maintains the spatial arrangement which allows the formation of a hydrogen bond between His110 and C11 that carbonyl of PGH2. We also show Tyr52 acts as the general acid catalyst for 9,10-PQ reduction, and thus we not only elucidate the catalytic mechanism of a PGH2 reductase but also provide an insight into the catalytic specificity of AKRs.
布氏锥虫前列腺素F2α合酶是一种醛酮还原酶,除了能催化9,10 -菲醌还原外,还能催化前列腺素H2还原为PGF2α。我们报道了分辨率为2.1埃的TbPGFS·NADP+·柠檬酸盐的晶体结构。TbPGFS采用平行(α/β)8桶状折叠结构,没有突出的环,并且具有一个疏水核心活性位点,该位点包含酪氨酸、赖氨酸、组氨酸和天冬氨酸的催化四联体,这在醛酮还原酶中高度保守。对催化四联体残基进行定点诱变表明,Lys77和His110的二元组以及Tyr52、Lys77和His110的三元组分别对PGH2和9,10 -菲醌的还原至关重要。结构和动力学分析表明,His110作为PGH2还原的一般酸催化剂,Lys77通过一个水分子促进His110的质子化,同时对His110施加静电排斥,维持空间排列,从而使His与PGH2羰基的C11之间形成氢键。我们还表明Tyr52作为9,10 -菲醌还原的一般酸催化剂,因此我们不仅阐明了PGH2还原酶的催化机制,还深入了解了醛酮还原酶的催化特异性。