Departamento de Bioquímica y Biología Molecular I, Universidad Complutense, 28040 Madrid, Spain.
Biochemistry. 2012 Sep 18;51(37):7403-16. doi: 10.1021/bi300848x. Epub 2012 Sep 4.
We have recombinantly expressed and purified the ligand binding domains (LBDs) of four insect nuclear receptors of the E75 family. The Drosophila melanogaster and Bombyx mori nuclear receptors were purified as ferric hemoproteins with Soret maxima at 424 nm, whereas their ferrous forms had a Soret maximum at 425 nm that responds to (•)NO and CO binding. In contrast, the purified LBD of Oncopeltus fasciatus displayed a Soret maximum at 415 nm for the ferric protein that shifted to 425 nm in its ferrous state. Binding of (•)NO to the heme moiety of the D. melanogaster and B. mori E75 LBD resulted in the appearance of a peak at 385 nm, whereas this peak appeared at 416 nm in the case of the O. fasciatus hemoprotein, resembling the behavior displayed by its human homologue, Rev-erbβ. High-performance liquid chromatography analysis revealed that, unlike the D. melanogaster and B. mori counterparts, the heme group of O. fasciatus is covalently attached to the protein through the side chains of two amino acids. The high degree of sequence homology with O. fasciatus E75 led us to clone and express the LBD of Blattella germanica, which established that its spectral properties closely resemble those of O. fasciatus and that it also has the heme group covalently bound to the protein. Hence, (•)NO/CO regulation of the transcriptional activity of these nuclear receptors might be differently controlled among various insect species. In addition, covalent heme binding provides strong evidence that at least some of these nuclear receptors function as diatomic gas sensors rather than heme sensors. Finally, our findings expand the classes of hemoproteins in which the heme group is normally covalently attached to the polypeptide chain.
我们已成功表达和纯化了四个 E75 家族昆虫核受体的配体结合域(LBD)。黑腹果蝇和家蚕核受体被纯化为高铁血红素蛋白,其 Soret 最大值在 424nm 处,而其亚铁形式的 Soret 最大值在 425nm 处,对(•)NO 和 CO 结合有响应。相比之下,美洲蜚蠊纯化的 LBD 显示出高铁蛋白的 Soret 最大值在 415nm 处,而在亚铁状态下则转移到 425nm。(•)NO 与 D. melanogaster 和 B. mori E75 LBD 血红素部分的结合导致在 385nm 处出现峰,而在 O. fasciatus 血红素蛋白的情况下,该峰出现在 416nm 处,类似于其人类同源物 Rev-erbβ 的行为。高效液相色谱分析表明,与 D. melanogaster 和 B. mori 相比,O. fasciatus 的血红素基团通过两个氨基酸的侧链共价连接到蛋白质上。与 O. fasciatus E75 的高度序列同源性使我们能够克隆和表达德国小蠊的 LBD,该研究证实其光谱特性与 O. fasciatus 非常相似,并且血红素基团也与蛋白质共价结合。因此,(•)NO/CO 对这些核受体转录活性的调节可能在不同的昆虫物种中受到不同的控制。此外,共价血红素结合为这些核受体至少作为双原子气体传感器而不是血红素传感器提供了有力证据。最后,我们的发现扩展了血红素基团通常共价连接到多肽链的血红素蛋白的类别。