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Thyroid hormone dependent gene expression

机译:甲状腺激素依赖性基因表达

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The presented work is destined to review the advances that had been made to study the role of thyroid hormone and thyroid hormone nuclear receptors in regulating the gene expression. Triiodothyronine (T3) and tetraiodothyronine (thyroxine or T4) are most important thyroid hormones. The thyroid hormones bind to their specific nuclear hormone receptors, as ligand, and play important role in gene expression and transcriptional gene regulation in human and higher animals. Thyroid hormone receptors form heterodimers by making combination with retinoid X receptors. The capability of heterodimerization of thyroid hormones generates novel complexes which allow altered specificity and higher affinity for DNA-receptor binding. Thyroid hormone receptors work as ligand activated transcription factor and play with transcriptional gene expression process. The consensus structural features of thyroid hormone receptors are N-terminal regulatory domain that contains activation function, the domain for strong gene expression and the domain for binding to DNA. The structures for individual domains have been extensively and reviewed through several latest and successful techniques.
机译:提出的工作旨在回顾研究甲状腺激素和甲状腺激素核受体在调节基因表达中的作用所取得的进展。三碘甲状腺素(T3)和四碘甲状腺素(甲状腺素或T4)是最重要的甲状腺激素。甲状腺激素结合其特定的核激素受体(作为配体),在人类和高等动物的基因表达和转录基因调控中发挥重要作用。甲状腺激素受体通过与类维生素X受体结合形成异二聚体。甲状腺激素异二聚化的能力产生了新颖的复合物,其允许改变的特异性和对DNA受体结合的更高亲和力。甲状腺激素受体充当配体激活的转录因子,并参与转录基因表达过程。甲状腺激素受体的共有结构特征是包含激活功能的N末端调节域,强基因表达域和与DNA结合的域。各个领域的结构已得到广泛应用,并通过几种最新且成功的技术进行了审查。

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