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分子建模和分子动力学模拟研究来自褐家鼠的甲状腺激素受体:保守水分子的作用。

Molecular modeling and molecular dynamics simulation studies on thyroid hormone receptor from Rattus norvegicus: role of conserved water molecules.

机构信息

Department of Chemistry, National Institute of Technology-Durgapur, Durgapur, West Bengal, 713209, India.

出版信息

J Mol Model. 2021 Apr 8;27(5):126. doi: 10.1007/s00894-021-04740-1.

Abstract

Thyroid hormone receptor (THR) belongs to the nuclear receptor (NR) superfamily that is activated by binding of appropriate ligand molecules (thyroid hormones). These receptors directly bind to specific DNA sequences for gene expression, which is essential for metabolism, homeostasis, and the development of organisms, making it an important drug target. Extensive MD-simulation studies of triiodothyronine (T3) docked modeled rnTHRβ1 structures have indicated the presence of twelve conserved water molecules at the DNA-DBD (DNA binding domain) interface. The W1-W5 water centers have been involved in the recognition between the A-chain of DBD to C-chain of DNA, W6 and W7 mediated the interaction between A-chain of DBD and D-chain of DNA, W8 and W9 recognized the B-chain of DBD and C-chain of DNA, and W9-W12 centers conjugated the residues of B-chain of DBD to D-chain of DNA through hydrogen bonds. The conformation flexibility of Phe272 and Met313 residues in the absence of T3 at the LBD (ligand-binding domain) region have been observed and reported.

摘要

甲状腺激素受体 (THR) 属于核受体 (NR) 超家族,其通过结合适当的配体分子(甲状腺激素)而被激活。这些受体直接与特定的 DNA 序列结合进行基因表达,这对代谢、内稳态和生物体的发育至关重要,使其成为一个重要的药物靶点。对三碘甲状腺原氨酸 (T3) 对接建模的 rnTHRβ1 结构进行的广泛 MD 模拟研究表明,在 DNA-DBD(DNA 结合域)界面存在 12 个保守的水分子。W1-W5 水分子中心参与 DBD 的 A 链与 DNA 的 C 链之间的识别,W6 和 W7 介导 DBD 的 A 链与 DNA 的 D 链之间的相互作用,W8 和 W9 识别 DBD 的 B 链与 DNA 的 C 链,W9-W12 中心通过氢键将 DBD 的 B 链残基与 DNA 的 D 链共轭。在 LBD(配体结合域)区域没有 T3 的情况下,观察到并报道了 Phe272 和 Met313 残基的构象灵活性。

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