Marvin Katherine A, Reinking Jeffrey L, Lee Andrea J, Pardee Keith, Krause Henry M, Burstyn Judith N
Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, Wisconsin 53706, USA.
Biochemistry. 2009 Jul 28;48(29):7056-71. doi: 10.1021/bi900697c.
Nuclear receptors E75, which regulates development in Drosophila melanogaster, and Rev-erbbeta, which regulates circadian rhythm in humans, bind heme within their ligand binding domains (LBD). The heme-bound ligand binding domains of E75 and Rev-erbbeta were studied using electronic absorption, MCD, resonance Raman, and EPR spectroscopies. Both proteins undergo redox-dependent ligand switching and CO- and NO-induced ligand displacement. In the Fe(III) oxidation state, the nuclear receptor hemes are low spin and 6-coordinate with cysteine(thiolate) as one of the two axial heme ligands. The sixth ligand is a neutral donor, presumably histidine. When the heme is reduced to the Fe(II) oxidation state, the cysteine(thiolate) is replaced by a different neutral donor ligand, whose identity is not known. CO binds to the Fe(II) heme in both E75(LBD) and Rev-erbbeta(LBD) opposite a sixth neutral ligand, plausibly the same histidine that served as the sixth ligand in the Fe(III) state. NO binds to the heme of both proteins; however, the NO-heme is 5-coordinate in E75 and 6-coordinate in Rev-erbbeta. These nuclear receptors exhibit coordination characteristics that are similar to other known redox and gas sensors, suggesting that E75 and Rev-erbbeta may function in heme-, redox-, or gas-regulated control of cellular function.
核受体E75(调节黑腹果蝇的发育)和Rev-erbbeta(调节人类的昼夜节律)在其配体结合结构域(LBD)内结合血红素。使用电子吸收光谱、磁圆二色光谱、共振拉曼光谱和电子顺磁共振光谱对E75和Rev-erbbeta的血红素结合配体结合结构域进行了研究。两种蛋白质都经历氧化还原依赖性配体切换以及CO和NO诱导的配体置换。在Fe(III)氧化态下,核受体血红素为低自旋且六配位,半胱氨酸(硫醇盐)是两个轴向血红素配体之一。第六个配体是一个中性供体,推测为组氨酸。当血红素还原为Fe(II)氧化态时,半胱氨酸(硫醇盐)被另一个未知身份的中性供体配体取代。CO在E75(LBD)和Rev-erbbeta(LBD)中均与Fe(II)血红素结合,与第六个中性配体相对,可能与在Fe(III)状态下作为第六个配体的组氨酸相同。NO与两种蛋白质的血红素结合;然而,E75中的NO-血红素为五配位,Rev-erbbeta中的为六配位。这些核受体表现出与其他已知氧化还原和气体传感器相似的配位特征,表明E75和Rev-erbbeta可能在血红素、氧化还原或气体调节的细胞功能控制中发挥作用。