Department of Biology, Fordham University, Bronx, New York 10458 , USA.
J Biol Chem. 2012 Mar 2;287(10):7821-33. doi: 10.1074/jbc.M111.327254. Epub 2012 Jan 16.
Juvenile hormone (JH) has been implicated in many developmental processes in holometabolous insects, but its mechanism of signaling remains controversial. We previously found that in Drosophila Schneider 2 cells, the nuclear receptor FTZ-F1 is required for activation of the E75A gene by JH. Here, we utilized insect two-hybrid assays to show that FTZ-F1 interacts with two JH receptor candidates, the bHLH-PAS paralogs MET and GCE, in a JH-dependent manner. These interactions are severely reduced when helix 12 of the FTZ-F1 activation function 2 (AF2) is removed, implicating AF2 as an interacting site. Through homology modeling, we found that MET and GCE possess a C-terminal α-helix featuring a conserved motif LIXXL that represents a novel nuclear receptor (NR) box. Docking simulations supported by two-hybrid experiments revealed that FTZ-F1·MET and FTZ-F1·GCE heterodimer formation involves a typical NR box-AF2 interaction but does not require the canonical charge clamp residues of FTZ-F1 and relies primarily on hydrophobic contacts, including a unique interaction with helix 4. Moreover, we identified paralog-specific features, including a secondary interaction site found only in MET. Our findings suggest that a novel NR box enables MET and GCE to interact JH-dependently with the AF2 of FTZ-F1.
保幼激素 (JH) 参与了完全变态昆虫的许多发育过程,但它的信号转导机制仍存在争议。我们之前发现,在果蝇 Schneider 2 细胞中,核受体 FTZ-F1 对于 JH 激活 E75A 基因是必需的。在这里,我们利用昆虫双杂交实验表明,FTZ-F1 以 JH 依赖的方式与两个 JH 受体候选物,即 bHLH-PAS 同源物 MET 和 GCE 相互作用。当 FTZ-F1 激活功能 2 (AF2) 的螺旋 12 被去除时,这些相互作用会严重减少,这表明 AF2 是一个相互作用的位点。通过同源建模,我们发现 MET 和 GCE 具有一个 C 末端 α-螺旋,其特征是一个保守的 motif LIXXL,代表一个新的核受体 (NR) 盒。双杂交实验支持的对接模拟表明,FTZ-F1·MET 和 FTZ-F1·GCE 异源二聚体的形成涉及典型的 NR 盒-AF2 相互作用,但不需要 FTZ-F1 的典型电荷夹残基,主要依赖于疏水相互作用,包括与螺旋 4 的独特相互作用。此外,我们还鉴定了同源物特异性特征,包括仅在 MET 中发现的二级相互作用位点。我们的研究结果表明,一个新的 NR 盒使 MET 和 GCE 能够与 FTZ-F1 的 AF2 进行 JH 依赖性相互作用。