Iwema Thomas, Billas Isabelle M L, Beck Yannick, Bonneton François, Nierengarten Hélène, Chaumot Arnaud, Richards Geoff, Laudet Vincent, Moras Dino
IGBMC (Institut de Génétique et de Biologie Moléculaire et Cellulaire), UMR7104 CNRS, U596 INSERM, ULP, Département de Biologie et de Génomique Structurales, Illkirch, France.
EMBO J. 2007 Aug 22;26(16):3770-82. doi: 10.1038/sj.emboj.7601810. Epub 2007 Aug 2.
Retinoid X receptor (RXR) and Ultraspiracle (USP) play a central role as ubiquitous heterodimerization partners of many nuclear receptors. While it has long been accepted that a wide range of ligands can activate vertebrate/mollusc RXRs, the existence and necessity of specific endogenous ligands activating RXR-USP in vivo is still matter of intense debate. Here we report the existence of a novel type of RXR-USP with a ligand-independent functional conformation. Our studies involved Tribolium USP (TcUSP) as representative of most arthropod RXR-USPs, with high sequence homology to vertebrate/mollusc RXRs. The crystal structure of the ligand-binding domain of TcUSP was solved in the context of the functional heterodimer with the ecdysone receptor (EcR). While EcR exhibits a canonical ligand-bound conformation, USP adopts an original apo structure. Our functional data demonstrate that TcUSP is a constitutively silent partner of EcR, and that none of the RXR ligands can bind and activate TcUSP. These findings together with a phylogenetic analysis suggest that RXR-USPs have undergone remarkable functional shifts during evolution and give insight into receptor-ligand binding evolution and dynamics.
维甲酸X受体(RXR)和超气门蛋白(USP)作为许多核受体普遍存在的异源二聚化伴侣发挥着核心作用。长期以来,人们一直认为多种配体可以激活脊椎动物/软体动物的RXR,但在体内激活RXR-USP的特定内源性配体的存在及其必要性仍是激烈争论的话题。在此,我们报告了一种具有不依赖配体功能构象的新型RXR-USP的存在。我们的研究涉及作为大多数节肢动物RXR-USP代表的赤拟谷盗USP(TcUSP),它与脊椎动物/软体动物的RXR具有高度的序列同源性。在与蜕皮激素受体(EcR)形成功能异源二聚体的情况下,解析了TcUSP配体结合结构域的晶体结构。虽然EcR呈现出典型的配体结合构象,但USP采用了一种原始的无配体结构。我们的功能数据表明,TcUSP是EcR的组成型沉默伴侣,并且没有一种RXR配体能够结合并激活TcUSP。这些发现与系统发育分析一起表明,RXR-USP在进化过程中经历了显著的功能转变,并为受体-配体结合的进化和动力学提供了见解。