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针对雌激素受体二价抑制的合理间隔子设计。

Towards a rational spacer design for bivalent inhibition of estrogen receptor.

机构信息

Zuse Institute Berlin, Takustraße 7, 14195 Berlin, Germany.

出版信息

J Comput Aided Mol Des. 2011 Mar;25(3):253-62. doi: 10.1007/s10822-011-9417-1. Epub 2011 Feb 18.

Abstract

Estrogen receptors are known drug targets that have been linked to several kinds of cancer. The structure of the estrogen receptor ligand binding domain is available and reveals a homodimeric layout. In order to improve the binding affinity of known estrogen receptor inhibitors, bivalent compounds have been developed that consist of two individual ligands linked by flexible tethers serving as spacers. So far, binding affinities of the bivalent compounds do not surpass their monovalent counterparts. In this article, we focus our attention on the molecular spacers that are used to connect the individual ligands to form bivalent compounds, and describe their thermodynamic contribution during the ligand binding process. We use computational methods to predict structural and entropic parameters of different spacer structures. We find that flexible spacers introduce a number of effects that may interfere with ligand binding and possibly can be connected to the low binding affinities that have been reported in binding assays. Based on these findings, we try to provide guidelines for the design of novel molecular spacers.

摘要

雌激素受体是已知的药物靶点,与多种癌症有关。雌激素受体配体结合域的结构已经可用,并揭示了同源二聚体的布局。为了提高已知雌激素受体抑制剂的结合亲和力,已经开发了双价化合物,它们由通过柔性连接体连接的两个单独的配体组成,作为间隔物。到目前为止,双价化合物的结合亲和力并没有超过它们的单价对应物。在本文中,我们将注意力集中在用于将各个配体连接形成双价化合物的分子间隔物上,并描述它们在配体结合过程中的热力学贡献。我们使用计算方法来预测不同间隔结构的结构和熵参数。我们发现,柔性间隔物会引入许多可能干扰配体结合的影响,并且可能与在结合测定中报道的低结合亲和力有关。基于这些发现,我们试图为新型分子间隔物的设计提供指导。

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