Stanley Thomas B, Leesnitzer Lisa M, Montana Valerie G, Galardi Cristin M, Lambert Millard H, Holt Jason A, Xu H Eric, Moore Linda B, Blanchard Steven G, Stimmel Julie B
Gene Expression and Protein Biochemistry, GlaxoSmithKline Research and Development, Research Triangle Park, North Carolina 27709, USA.
Biochemistry. 2003 Aug 12;42(31):9278-87. doi: 10.1021/bi034472c.
Natural ligands for nuclear receptors are believed to activate gene transcription by causing dissociation of corepressors and promoting the association of coactivator proteins. Using multiple biophysical techniques, we find that peptides derived from one of the nuclear receptor interacting motifs of the corepressors nuclear receptor corepressor (NCoR) and silencing mediator of retinoid and thyroid receptors (SMRT) are able to bind the ligand binding domains (LBD) of all three PPAR (peroxisome proliferator activated receptor) subtypes. Using these peptides as tools, we find that ligands designed as selective agonists for PPAR gamma promote the association of coactivator peptides and dissociation of corepressor peptides as expected on PPAR gamma but surprisingly have varied effects on the binding of corepressor peptides to the other PPAR subtypes. In particular, some members of a class of L-tyrosine-based compounds designed as selective agonists for PPAR gamma reduce the affinity for corepressor peptides on PPAR gamma but increase the affinity for the same peptides on PPAR delta and in one case on PPAR alpha. We provide structural data that suggests that the molecular basis for these observations are variations in the ligand binding pockets of the three PPAR subtypes that are perturbed differentially by individual ligands and result in altered presentations of the overlapping coactivator/corepressor binding surfaces.
核受体的天然配体被认为是通过引起共抑制因子的解离并促进共激活蛋白的结合来激活基因转录的。我们运用多种生物物理技术发现,源自共抑制因子核受体共抑制因子(NCoR)和维甲酸及甲状腺激素受体沉默介质(SMRT)的核受体相互作用基序之一的肽,能够结合所有三种过氧化物酶体增殖物激活受体(PPAR)亚型的配体结合域(LBD)。以这些肽作为工具,我们发现设计为PPARγ选择性激动剂的配体,如预期那样促进了共激活肽的结合以及PPARγ上共抑制肽的解离,但令人惊讶的是,它们对共抑制肽与其他PPAR亚型的结合有不同影响。特别是,一类设计为PPARγ选择性激动剂的基于L - 酪氨酸的化合物中的一些成员,降低了共抑制肽与PPARγ的亲和力,但增加了其与PPARδ以及在一种情况下与PPARα上相同肽的亲和力。我们提供的结构数据表明,这些观察结果的分子基础是三种PPAR亚型配体结合口袋的差异,这些差异被单个配体以不同方式扰动,导致重叠的共激活剂/共抑制因子结合表面呈现改变。