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Structural changes in thyroid hormone receptor-beta by T3 binding and L330S mutational interactions

机译:T3结合和L330S突变相互作用的甲状腺激素受体-β的结构变化

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摘要

The point mutations like L330S in the ligand binding domain (LBD) of thyroid hormone receptor-beta (THR-β) make the structural changes as reflected by Ramachandran plots, solvent accessible surface area, radial distribution functions, root mean square deviations and fluctuations, and interaction and internal energies of the LBD residues. By using nanoscale molecular dynamics (NAMD) simulations, the structural features of T3 liganded, unliganded and mutated THR-β LBD are compared to explore the molecular insights in euthyroid, hypothyroid and resistance to thyroid hormones (RTH) states, respectively. The L330S-mutant causes steric hindrance while binding T3 into THR-β LBD causing RTH in the thyroid patients.
机译:甲状腺激素受体-β(Thr-β)的配体结合结构域(LBD)中的L330S等点突变使得结构变化是由Ramachandran图反映的结构变化,溶剂可接近的表面积,径向分布函数,根均方偏差和波动,和LBD残留物的相互作用和内部能量。通过使用纳米级分子动力学(NAMD)模拟,比较T3配体,未结合和突变的Thr-β1BD的结构特征,以探讨分别的甲状腺素,甲状腺功能亢进,甲状腺激素(RTH)状态的分子见解。 L330S-突变体导致空间障碍,同时将T3结合到甲状腺患者中引起RTH的TH-β1BD。

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