Li Yong, Choi Mihwa, Cavey Greg, Daugherty Jennifer, Suino Kelly, Kovach Amanda, Bingham Nathan C, Kliewer Steven A, Xu H Eric
Laboratory of Structural Sciences, Van Andel Research Institute, 333 Bostwick Avenue, Grand Rapids, MI 49503, USA.
Mol Cell. 2005 Feb 18;17(4):491-502. doi: 10.1016/j.molcel.2005.02.002.
The orphan nuclear receptor steroidogenic factor 1 (SF-1) regulates the differentiation and function of endocrine glands. Although SF-1 is constitutively active in cell-based assays, it is not known whether this transcriptional activity is modulated by ligands. Here, we describe the 1.5 angstroms crystal structure of the SF-1 ligand binding domain in complex with an LXXLL motif from a coregulator protein. The structure reveals the presence of a phospholipid ligand in a surprisingly large pocket (approximately 1600 angstroms3), with the receptor adopting the canonical active conformation. The bound phospholipid is readily exchanged and modulates SF-1 interactions with coactivators. Mutations designed to reduce the size of the SF-1 pocket or to disrupt hydrogen bonds with the phospholipid abolish SF-1/coactivator interactions and significantly reduce SF-1 transcriptional activity. These findings provide evidence that SF-1 is regulated by endogenous ligands and suggest an unexpected relationship between phospholipids and endocrine development and function.
孤儿核受体类固醇生成因子1(SF-1)调节内分泌腺的分化和功能。尽管在基于细胞的检测中SF-1具有组成性活性,但尚不清楚这种转录活性是否受配体调节。在此,我们描述了与来自共调节蛋白的LXXLL基序结合的SF-1配体结合域的1.5埃晶体结构。该结构揭示了在一个出人意料的大口袋(约1600埃³)中存在一种磷脂配体,受体呈现出典型的活性构象。结合的磷脂易于交换并调节SF-1与共激活因子的相互作用。旨在减小SF-1口袋大小或破坏与磷脂氢键的突变消除了SF-1/共激活因子的相互作用,并显著降低了SF-1的转录活性。这些发现提供了SF-1受内源性配体调节的证据,并提示了磷脂与内分泌发育和功能之间意想不到的关系。