Mengeling Brenda J, Lee Sangho, Privalsky Martin L
Section of Microbiology, One Shields Avenue, University of California, Davis 95616, CA, USA.
Mol Cell Endocrinol. 2008 Jan 2;280(1-2):47-62. doi: 10.1016/j.mce.2007.09.011. Epub 2007 Oct 6.
Thyroid hormone receptors (TRs) are hormone-regulated transcription factors. TRs are generally thought to bind to their DNA target sites as homodimers or as TR/retinoid X receptor (RXR) heterodimers. However, we have shown that certain TR isoforms, such as TRbeta0, can bind as trimers to a subset of naturally occurring DNA elements. We report here that this trimeric mode of DNA recognition by TRbeta0 also results in an enhanced recruitment of coactivators in vitro and increased transcriptional activation in cells compared to TRbeta0 dimers. At least part of this enhanced coactivator recruitment reflects a selectively enhanced avidity of the TRbeta0 trimer for a specific LXXLL interaction motif within the p160 coactivators. TRbeta0 trimers also recruit certain coactivators at lower concentrations of T3 hormone and exhibit distinct coactivator stoichiometries than do TRbeta0 dimers. We conclude that trimer formation confers isoform-specific DNA recognition and transcriptional regulatory properties that are not observed for TR dimers.
甲状腺激素受体(TRs)是受激素调节的转录因子。TRs通常被认为以同二聚体或TR/视黄酸X受体(RXR)异二聚体的形式与它们的DNA靶位点结合。然而,我们已经表明,某些TR异构体,如TRbeta0,可以以三聚体的形式结合到一部分天然存在的DNA元件上。我们在此报告,与TRbeta0二聚体相比,TRbeta0对DNA的这种三聚体识别模式在体外还导致共激活因子的募集增强,在细胞中导致转录激活增加。这种增强的共激活因子募集至少部分反映了TRbeta0三聚体对p160共激活因子内特定LXXLL相互作用基序的选择性增强的亲和力。与TRbeta0二聚体相比,TRbeta0三聚体在较低浓度的T3激素下也能募集某些共激活因子,并且表现出不同的共激活因子化学计量。我们得出结论,三聚体的形成赋予了异构体特异性的DNA识别和转录调节特性,而这些特性在TR二聚体中未观察到。