Alonso Manuela, Goodwin Charles, Liao Xiaohui, Ortiga-Carvalho Tania, Machado Danielle S, Wondisford Fredric E, Refetoff Samuel, Weiss Roy E
Department of Medicine, Committees on Genetics, The University of Chicago, Chicago, Illinois 60637, USA.
Endocrinology. 2009 Aug;150(8):3927-34. doi: 10.1210/en.2009-0093. Epub 2009 Apr 30.
The activation function-2 (AF-2) domain of the thyroid hormone (TH) receptor (TR)-beta is a TH-dependent binding site for nuclear coactivators (NCoA), which modulate TH-dependent gene transcription. In contrast, the putative AF-1 domain is a TH-independent region interacting with NCoA. We determined the specificity of the AF-2 domain and NCoA interaction by evaluating thyroid function in mice with combined disruption of the AF-2 domain in TRbeta, due to a point mutation (E457A), and deletion of one of the NCoAs, steroid receptor coactivator (SRC)-1. The E457A mutation was chosen because it abolishes NCoA recruitment in vitro while preserving normal TH binding and corepressor interactions resulting in resistance to TH. At baseline, disruption of SRC-1 in the homozygous knock-in (TRbeta(E457A/E457A)) mice worsened the degree of resistance to TH, resulting in increased serum T(4) and TSH. During TH deprivation, disruption of AF-2 and SRC-1 resulted in a TSH rise 50% of what was seen when AF-2 alone was removed, suggesting that SRC-1 was interacting outside of the AF-2 domain. Therefore, 1) during TH deprivation, SRC-1 is necessary for activating the hypothalamic-pituitary-thyroid axis; 2) ligand-dependent repression of TSH requires an intact AF-2; and 3) SRC-1 may interact with the another region of the TRbeta or the TRalpha to regulate TH action in the pituitary. This report demonstrates the dual interaction of NCoA in vivo: the TH-independent up-regulation possibly through another domain and TH-dependent down-regulation through the AF-2 domain.
甲状腺激素(TH)受体(TR)-β的激活功能-2(AF-2)结构域是核共激活因子(NCoA)的TH依赖性结合位点,NCoA可调节TH依赖性基因转录。相比之下,推测的AF-1结构域是与NCoA相互作用的TH非依赖性区域。我们通过评估TRβ中AF-2结构域因点突变(E457A)而联合破坏且缺失一种NCoA(类固醇受体共激活因子(SRC)-1)的小鼠的甲状腺功能,来确定AF-2结构域与NCoA相互作用的特异性。选择E457A突变是因为它在体外消除了NCoA募集,同时保留了正常的TH结合和共抑制因子相互作用,从而导致对TH产生抗性。在基线时,纯合敲入(TRβ(E457A/E457A))小鼠中SRC-1的破坏使对TH的抗性程度恶化,导致血清T4和TSH升高。在TH缺乏期间,AF-2和SRC-1的破坏导致TSH升高幅度为单独去除AF-2时的50%,这表明SRC-1在AF-2结构域之外相互作用。因此,1)在TH缺乏期间,SRC-1是激活下丘脑-垂体-甲状腺轴所必需的;2)TSH的配体依赖性抑制需要完整的AF-2;3)SRC-1可能与TRβ或TRα的另一个区域相互作用,以调节垂体中的TH作用。本报告证明了NCoA在体内存在双重相互作用:可能通过另一个结构域进行TH非依赖性上调,以及通过AF-2结构域进行TH依赖性下调。