Reinking Jeff, Lam Mandy M S, Pardee Keith, Sampson Heidi M, Liu Suya, Yang Ping, Williams Shawn, White Wendy, Lajoie Gilles, Edwards Aled, Krause Henry M
Banting and Best Department of Medical Research, Charles H. Best Institute, 112 College Street, Toronto, Ontario, M5G 1L6, Canada.
Cell. 2005 Jul 29;122(2):195-207. doi: 10.1016/j.cell.2005.07.005.
Nuclear receptors are a family of transcription factors with structurally conserved ligand binding domains that regulate their activity. Despite intensive efforts to identify ligands, most nuclear receptors are still "orphans." Here, we demonstrate that the ligand binding pocket of the Drosophila nuclear receptor E75 contains a heme prosthetic group. E75 absorption spectra, resistance to denaturants, and effects of site-directed mutagenesis indicate a single, coordinately bound heme molecule. A correlation between the levels of E75 expression and the levels of available heme suggest a possible role as a heme sensor. The oxidation state of the heme iron also determines whether E75 can interact with its heterodimer partner DHR3, suggesting an additional role as a redox sensor. Further, the E75-DHR3 interaction is also regulated by the binding of NO or CO to the heme center, suggesting that E75 may also function as a diatomic gas sensor. Possible mechanisms and roles for these interactions are discussed.
核受体是一类转录因子,其具有结构保守的配体结合结构域来调节自身活性。尽管人们为鉴定配体付出了巨大努力,但大多数核受体仍然是“孤儿”。在此,我们证明果蝇核受体E75的配体结合口袋含有一个血红素辅基。E75的吸收光谱、对变性剂的抗性以及定点诱变的效果表明存在单个配位结合的血红素分子。E75表达水平与可利用血红素水平之间的相关性表明其可能作为血红素传感器发挥作用。血红素铁的氧化态还决定E75是否能与其异源二聚体伙伴DHR3相互作用,这表明其还具有作为氧化还原传感器的额外作用。此外,E75与DHR3的相互作用也受NO或CO与血红素中心结合的调节,这表明E75可能还作为双原子气体传感器发挥作用。文中讨论了这些相互作用的可能机制和作用。