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首页> 外文期刊>Journal of Medicinal Chemistry >Discovery of allosteric modulators of factor XIa by targeting hydrophobic domains adjacent to its heparin-binding site
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Discovery of allosteric modulators of factor XIa by targeting hydrophobic domains adjacent to its heparin-binding site

机译:通过靶向与其肝素结合位点相邻的疏水域来发现因子XIa的变构调节剂

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摘要

To discover promising sulfated allosteric modulators (SAMs) of glycosaminoglycan-binding proteins (GBPs), such as human factor XIa (FXIa), we screened a library of 26 synthetic, sulfated quinazolin-4(3H)-ones (QAOs) resulting in the identification of six molecules that reduced the V _(max) of substrate hydrolysis without influencing the K_M. Mutagenesis of residues of the heparin-binding site (HBS) of FXIa introduced a nearly 5-fold loss in inhibition potency supporting recognition of an allosteric site. Fluorescence studies showed a sigmoidal binding profile indicating highly cooperative binding. Competition with a positively charged, heparin-binding polymer did not fully nullify inhibition suggesting importance of hydrophobic forces to binding. This discovery suggests the operation of a dual-element recognition process, which relies on an initial Coulombic attraction of anionic SAMs to the cationic HBS of FXIa that forms a locked complex through tight interaction with an adjacent hydrophobic patch. The dual-element strategy may be widely applicable for discovering SAMs of other GBPs.
机译:为了发现糖胺聚糖结合蛋白(GBP)的有希望的硫酸化变构调节剂(SAMs),例如人因子XIa(FXIa),我们筛选了26个合成的硫酸化喹唑啉4(3H)-one(QAOs)库,鉴定了六个可降低底物水解V_(max)而又不影响K_M的分子。 FXIa肝素结合位点(HBS)残基的诱变导致抑制力丧失近5倍,从而支持变构位点的识别。荧光研究显示出S状结合特征,表明高度协作结合。与带正电的肝素结合聚合物的竞争不能完全消除抑制作用,这表明疏水力对结合至关重要。该发现表明双元素识别过程的操作,该过程依赖于阴离子SAMs对FXIa的阳离子HBS的最初库伦吸引,FXIa的阳离子HBS通过与相邻疏水性补丁的紧密相互作用形成锁定的复合物。双元素策略可能广泛适用于发现其他GBP的SAM。

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