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糖皮质激素受体DNA结合结构域与不同反应元件复合物的结构、热力学及协同性。分子动力学模拟和自由能微扰研究。

Structure, thermodynamics and cooperativity of the glucocorticoid receptor DNA-binding domain in complex with different response elements. Molecular dynamics simulation and free energy perturbation studies.

作者信息

Eriksson M A, Nilsson L

机构信息

Department of Biosciences, NOVUM Karolinska Institutet, Huddinge, Sweden.

出版信息

J Mol Biol. 1995 Oct 27;253(3):453-72. doi: 10.1006/jmbi.1995.0566.

Abstract

Molecular dynamics simulations and free energy perturbation calculations have been performed on the glucocorticoid receptor DNA-binding domain (GRDBD) in complex with three different half-site response elements (RE). These are the glucocorticoid receptor RE (GREH), the estrogen receptor RE (EREH) and an "intermediate" RE (GRE2H), where the base-pair 6A.T in GREH has been replaced by 6G.C. The molecular dynamics/free energy perturbation calculations reveal the same order of stability of the three complexes, i.e. GREH-GRDBD > GRE2H-GRDBD > EREH-GRDBD, as found experimentally, with reasonable quantitative agreement of the relative stabilities with the experiments. The more favourable entropy in associating GRDBD to GREH than to GRE2H could be explained by the additional non-polar surface that is removed from the solvent in the former complex formation. Part of this additional surface originates from the 6T methyl group in GREH. Sequence-dependent hydration patterns of the DNA major groove, which is interrupted by the GRDBD binding, could also contribute to the relatively more favourable entropy in forming GREH-GRDBD than GRE2H-GRDBD. The tenfold reduced cooperativity in the dimeric GRDBD binding to a partially palindromic ERE (palERE) compared to palGRE/GRE2 could be attributed to conformational changes in the residues of the "D-box" (Cys476 to Cys482) observed in the molecular dynamics simulations of EREH-GRDBD, but not in the other two complexes. Moreover, the conformations of the base-pairs at positions 5 and 6 are distorted (compared to free B-DNA) in GREH and GRE2H, due to the binding of GRDBD. Since the corresponding conformational distortions were not found in EREH-GRDBD, it is plausible that the distortions mediate cooperative binding through a propagation of the distortions to the other half site, thus facilitating binding of the second GRDBD.

摘要

已对与三种不同半位点反应元件(RE)结合的糖皮质激素受体DNA结合结构域(GRDBD)进行了分子动力学模拟和自由能扰动计算。这三种反应元件分别是糖皮质激素受体反应元件(GREH)、雌激素受体反应元件(EREH)和一个“中间”反应元件(GRE2H),其中GREH中的6A.T碱基对已被6G.C取代。分子动力学/自由能扰动计算揭示了这三种复合物的稳定性顺序相同,即GREH - GRDBD > GRE2H - GRDBD > EREH - GRDBD,这与实验结果一致,相对稳定性与实验结果在合理的定量范围内相符。GRDBD与GREH结合时比与GRE2H结合时更有利的熵,可以通过在前一种复合物形成过程中从溶剂中去除的额外非极性表面来解释。这种额外表面的一部分源自GREH中的6T甲基。DNA大沟的序列依赖性水化模式被GRDBD结合所中断,这也可能导致形成GREH - GRDBD比形成GRE2H - GRDBD时具有相对更有利的熵。与palGRE/GRE2相比,二聚体GRDBD与部分回文雌激素反应元件(palERE)结合时协同性降低了十倍,这可归因于在EREH - GRDBD的分子动力学模拟中观察到的“D框”(Cys476至Cys482)残基的构象变化,而在其他两种复合物中未观察到这种变化。此外,由于GRDBD的结合,GREH和GRE2H中第5和第6位碱基对的构象(与游离B - DNA相比)发生了扭曲。由于在EREH - GRDBD中未发现相应的构象扭曲,因此这种扭曲通过向另一半位点传播来介导协同结合从而促进第二个GRDBD结合是合理的。

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