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A Novel, “Double-Clamp” Binding Mode for Human Heme Oxygenase-1 Inhibition

机译:一种新型的“双钳”人血红素加氧酶-1抑制结合模式。

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摘要

The development of heme oxygenase (HO) inhibitors is critical in dissecting and understanding the HO system and for potential therapeutic applications. We have established a program to design and optimize HO inhibitors using structure-activity relationships in conjunction with X-ray crystallographic analyses. One of our previous complex crystal structures revealed a putative secondary hydrophobic binding pocket which could be exploited for a new design strategy by introducing a functional group that would fit into this potential site. To test this hypothesis and gain further insights into the structural basis of inhibitor binding, we have synthesized and characterized 1-(1H-imidazol-1-yl)-4,4-diphenyl-2-butanone (QC-308). Using a carbon monoxide (CO) formation assay on rat spleen microsomes, the compound was found to be ∼15 times more potent (IC50 = 0.27±0.07 µM) than its monophenyl analogue, which is already a potent compound in its own right (QC-65; IC50 = 4.0±1.8 µM). The crystal structure of hHO-1 with QC-308 revealed that the second phenyl group in the western region of the compound is indeed accommodated by a definitive secondary proximal hydrophobic pocket. Thus, the two phenyl moieties are each stabilized by distinct hydrophobic pockets. This “double-clamp” binding offers additional inhibitor stabilization and provides a new route for improvement of human heme oxygenase inhibitors.
机译:血红素加氧酶(HO)抑制剂的开发对于剖析和理解HO系统以及潜在的治疗应用至关重要。我们已经建立了使用X射线晶体学分析与结构-活性关系设计和优化HO抑制剂的程序。我们以前的复杂晶体结构之一揭示了一个推定的次要疏水结合口袋,可通过引入适合该潜在位点的官能团来开发新的设计策略。为了测试该假设并深入了解抑制剂结合的结构基础,我们合成并表征了1-(1H-咪唑-1-基)-4,4-二苯基-2-丁酮(QC-308)。使用大鼠脾微粒体上的一氧化碳(CO)形成分析,发现该化合物的效价(IC50 = 0.27±0.07 µM)约是其单苯基类似物的效价的约15倍,而单苯基类似物本身就是一种有效的化合物(QC) -65; IC50 == 4.0±1.8μM)。具有QC-308的hHO-1的晶体结构表明,化合物西部区域中的第二个苯基确实被确定的次级近端疏水性口袋所容纳。因此,两个苯基部分各自被不同的疏水性口袋稳定。这种“双钳位”结合提供了额外的抑制剂稳定性,并为改善人类血红素加氧酶抑制剂提供了一条新途径。

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