Nielsen Tine Kragh, Hildmann Christian, Riester Daniel, Wegener Dennis, Schwienhorst Andreas, Ficner Ralf
Abteilung für Molekulare Strukturbiologie, Institut für Mikrobiologie und Genetik and GZMB, Justus-von-Liebig Weg 11, 37077 Göttingen, Germany.
Acta Crystallogr Sect F Struct Biol Cryst Commun. 2007 Apr 1;63(Pt 4):270-3. doi: 10.1107/S1744309107012377. Epub 2007 Mar 23.
Histone deacetylases (HDACs) have emerged as attractive targets in anticancer drug development. To date, a number of HDAC inhibitors have been developed and most of them are hydroxamic acid derivatives, typified by suberoylanilide hydroxamic acid (SAHA). Not surprisingly, structural information that can greatly enhance the design of novel HDAC inhibitors is so far only available for hydroxamic acids in complex with HDAC or HDAC-like enzymes. Here, the first structure of an enzyme complex with a nonhydroxamate HDAC inhibitor is presented. The structure of the trifluoromethyl ketone inhibitor 9,9,9-trifluoro-8-oxo-N-phenylnonanamide in complex with bacterial FB188 HDAH (histone deacetylase-like amidohydrolase from Bordetella/Alcaligenes strain FB188) has been determined. HDAH reveals high sequential and functional homology to human class 2 HDACs and a high structural homology to human class 1 HDACs. Comparison with the structure of HDAH in complex with SAHA reveals that the two inhibitors superimpose well. However, significant differences in binding to the active site of HDAH were observed. In the presented structure the O atom of the trifluoromethyl ketone moiety is within binding distance of the Zn atom of the enzyme and the F atoms participate in interactions with the enzyme, thereby involving more amino acids in enzyme-inhibitor binding.
组蛋白去乙酰化酶(HDACs)已成为抗癌药物研发中颇具吸引力的靶点。迄今为止,已开发出多种HDAC抑制剂,其中大多数是异羟肟酸衍生物,以辛二酰苯胺异羟肟酸(SAHA)为代表。不出所料,目前能够极大促进新型HDAC抑制剂设计的结构信息仅适用于与HDAC或类HDAC酶结合的异羟肟酸。在此,首次报道了一种与非异羟肟酸HDAC抑制剂形成的酶复合物结构。已确定三氟甲基酮抑制剂9,9,9 - 三氟 - 8 - 氧代 - N - 苯基壬酰胺与细菌FB188 HDAH(来自博德特氏菌/产碱杆菌菌株FB188的类组蛋白去乙酰化酶酰胺水解酶)形成的复合物结构。HDAH与人类2类HDAC具有高度的序列和功能同源性,与人类1类HDAC具有高度的结构同源性。与HDAH和SAHA形成的复合物结构比较表明,这两种抑制剂的叠加效果良好。然而,观察到它们与HDAH活性位点的结合存在显著差异。在所示结构中,三氟甲基酮部分的O原子处于酶的Zn原子的结合距离内,F原子参与与酶的相互作用,从而在酶 - 抑制剂结合中涉及更多氨基酸。