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甲状腺受体的寡聚状态调节激素结合动力学。

The oligomeric state of thyroid receptor regulates hormone binding kinetics.

机构信息

Diabetes Center, University of California, 513 Parnassus Avenue, 94143 San Francisco, California, USA.

出版信息

J Endocrinol. 2011 Jul;210(1):125-34. doi: 10.1530/JOE-11-0019. Epub 2011 Apr 20.

Abstract

We previously reported that mutations in the thyroid hormone receptor (TR) surface that mediates dimer and heterodimer formation do not alter affinity for cognate hormone (triiodothyronine (T(3))) yet dramatically enhance T(3) association and dissociation rates. This study aimed to show that TR oligomeric state influences binding and dissociation kinetics. We performed binding assays using marked hormone ((125)I-T(3)) and TRs expressed and purified by different methods. We find that T(3) associates with TRs with biphasic kinetics in solution; a rapid step (half-life ±0.1 h) followed by a slower second step (half-life ±5 h) and that purification of monomers suggests that biphasic kinetics are due to the presence of monomers and dimers in our preparations. In support of this idea, incubation of TR ligand binding domain monomers with corepressor peptide induces dimer formation and decreases association rates and T(3) binds to, and dissociates from, a TRβ mutant that only forms dimers (TRβD355R) with slow single-phase kinetics. In addition, heterodimer formation with retinoid X receptors also influences ligand binding kinetics. Together, these results suggest that the dimer/heterodimer surface is allosterically coupled to the hormone binding pocket and that different interactions at this surface exert different effects on ligand binding that may be relevant for TR actions in the cell.

摘要

我们之前报道过,甲状腺激素受体(TR)表面介导二聚体和异二聚体形成的突变不会改变其对同源激素(三碘甲状腺原氨酸(T(3))的亲和力,但会显著增强 T(3)的结合和解离速率。本研究旨在表明 TR 的寡聚状态会影响结合和解离动力学。我们使用标记的激素((125)I-T(3))和通过不同方法表达和纯化的 TRs 进行了结合测定。我们发现 T(3)在溶液中与 TRs 以双相动力学结合;快速步骤(半衰期±0.1 h),随后是较慢的第二步(半衰期±5 h),并且单体的纯化表明双相动力学是由于我们的制剂中存在单体和二聚体。支持这一观点的是,与核心抑制肽孵育 TR 配体结合结构域单体诱导二聚体形成并降低结合速率,并且 T(3)结合并从仅形成二聚体(TRβD355R)的 TRβ 突变体(TRβD355R)中解离,具有缓慢的单相动力学。此外,与视黄酸 X 受体的异二聚体形成也会影响配体结合动力学。总之,这些结果表明二聚体/异二聚体表面与激素结合口袋呈变构耦联,并且该表面的不同相互作用对配体结合产生不同的影响,这可能与 TR 在细胞中的作用有关。

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