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突变甲状腺激素受体与核心抑制剂之间的病理性相互作用及其被一种具有治疗潜力的甲状腺激素类似物的调节。

Pathological Interactions Between Mutant Thyroid Hormone Receptors and Corepressors and Their Modulation by a Thyroid Hormone Analogue with Therapeutic Potential.

机构信息

1 CBS, CNRS, INSERM; INSERM, ICM; University of Montpellier, Montpellier, France.

2 Brazilian Biosciences National Laboratory (LNBio), Brazilian Center for Research in Energy and Materials (CNPEM), Campinas, Brazil.

出版信息

Thyroid. 2018 Dec;28(12):1708-1722. doi: 10.1089/thy.2017.0551. Epub 2018 Oct 16.

Abstract

BACKGROUND

Thyroid hormone receptors (TRs) are tightly regulated by the corepressors nuclear receptor corepressor (NCoR) and silencing mediator of retinoic acid and thyroid hormone receptors. Three conserved corepressor/NR signature box motifs (CoRNR1-3) forming the nuclear receptor interaction domain have been identified in these corepressors. Whereas TRs regulate multiple normal physiological and developmental pathways, mutations in TRs can result in endocrine diseases and be associated with cancers due to impairment of corepressor release. Three mutants that are located in helix H11 of TRs are of special interest: TRα-M388I, a mutant associated with the development of renal clear cell carcinomas (RCCCs), and TRβ-Δ430 and TRβ-Δ432, two deletion mutants causing resistance to thyroid hormone syndrome.

METHODS

Several cell-based and biophysical methods were used to measure the affinity between wild-type and mutant TRα and TRβ and all the CoRNR motifs from corepressors to quantify the effects of different thyroid hormone analogues on these interactions. This study was coupled with the measurement of interactions between wild-type and mutant TRs in the context of a heterodimer with RXR to a NCoR fragment in the presence of the same ligands. Structural insights into the binding mode of corepressors to TRs were assessed in parallel by nuclear magnetic resonance spectroscopy.

RESULTS

The study shows that TRs interact more avidly with the silencing mediator of retinoic acid and thyroid hormone receptors than with NCoR peptides, and that TRα binds most avidly to S-CoRNR3, whereas TRβ binds preferentially to S-CoRNR2. In the studied TR mutants, a transfer of the CoRNR-specificity toward CoRNR1 was observed, coupled with a significant increase in the binding strength. In contrast to 3,5,3'-triiodothyronine (T3), the agonist TRIAC and the antagonist NH-3 were very efficient at dissociating the abnormally strong interactions between mutant TRβs and corepressors. A strong impairment of T3-binding for TRβ mutants was shown compared to TRIAC and NH-3 and could explain the different efficiencies of the different ligands in releasing corepressors from the studied TRβ mutants. Consequently, TRIAC was found to be more effective than T3 in facilitating coactivator recruitment and decreasing the dominant activity of TRβ-Δ430.

CONCLUSION

This study helps to clarify the specific interaction surfaces involved in the pathologic phenotype of TR mutants and demonstrates that TRIAC is a potential therapeutic agent for patients suffering from resistance to thyroid hormone syndromes.

摘要

背景

甲状腺激素受体 (TR) 受核受体共抑制因子 (NCoR) 和视黄酸和甲状腺激素受体沉默介体严格调控。这些共抑制因子中已鉴定出三个保守的共抑制因子/NR 特征盒基序 (CoRNR1-3),形成核受体相互作用域。虽然 TR 调节多种正常的生理和发育途径,但 TR 的突变可导致内分泌疾病,并因共抑制因子释放受损而与癌症相关。位于 TR 螺旋 H11 中的三个突变体特别引人注目:TRα-M388I,与肾透明细胞癌 (RCCC) 的发生相关的突变体,以及 TRβ-Δ430 和 TRβ-Δ432,两个导致甲状腺激素抵抗综合征的缺失突变体。

方法

使用几种基于细胞和生物物理的方法测量野生型和突变型 TRα 和 TRβ与来自共抑制因子的所有 CoRNR 基序之间的亲和力,以量化不同甲状腺激素类似物对这些相互作用的影响。这项研究还结合了在存在相同配体的情况下,与 RXR 形成异二聚体的野生型和突变型 TR 与 NCoR 片段之间相互作用的测量。通过核磁共振波谱学平行评估了共抑制因子与 TR 结合模式的结构见解。

结果

研究表明,TR 与视黄酸和甲状腺激素受体沉默介体的相互作用比与 NCoR 肽更紧密,TRα 最紧密地与 S-CoRNR3 结合,而 TRβ 优先与 S-CoRNR2 结合。在所研究的 TR 突变体中,观察到 CoRNR 特异性向 CoRNR1 的转移,同时结合强度显著增加。与 3,5,3'-三碘甲状腺原氨酸 (T3) 相比,激动剂 TRIAC 和拮抗剂 NH-3 非常有效地将突变型 TRβ 与共抑制因子之间异常强的相互作用解离。与 TRIAC 和 NH-3 相比,TRβ 突变体对 T3 结合的抑制作用很强,这可以解释不同配体从研究的 TRβ 突变体中释放共抑制因子的不同效率。因此,发现 TRIAC 比 T3 更有效地促进辅激活因子募集并降低 TRβ-Δ430 的显性活性。

结论

这项研究有助于阐明 TR 突变体病态表型涉及的特定相互作用表面,并表明 TRIAC 是甲状腺激素抵抗综合征患者的潜在治疗药物。

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