首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Identification and Optimization of PDE10A Inhibitors Using Fragment-Based Screening by Nanocalorimetry and X-ray Crystallography
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Identification and Optimization of PDE10A Inhibitors Using Fragment-Based Screening by Nanocalorimetry and X-ray Crystallography

机译:纳米量热法和X射线晶体学基于片段的筛选方法鉴定和优化PDE10A抑制剂

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Fragment-based lead discovery (FBLD) is a technique in which small, low-complexity chemical fragments of 6 to 15 heavy atoms are screened for binding to or inhibiting activity of the target. Hits are then linked and/or elaborated into tightly binding ligands, ideally yielding early lead compounds for drug discovery. Calorimetry provides a label-free method to assay binding and enzymatic activity that is unaffected by the spectroscopic properties of the sample. Conventional microcalorimetry is hampered by requiring large quantities of reagents and long measurement times. Nanocalorimeters can overcome these limitations of conventional isothermal titration calorimetry. Here we use enthalpy arrays, which are arrays of nanocalorimeters, to perform an enzyme activity-based fragment screen for competitive inhibitors of phosphodiesterase 10A (PDE10A). Two dozen fragments with K_I <2 mM were identified and moved to crystal soaking trials. All soak experiments yielded high-resolution diffraction, with two-thirds of the fragments yielding high-resolution co-crystal structures with PDE10A. The structural information was used to elaborate fragment hits, yielding leads with KI <1 μM. This study shows how array calorimetry can be used as a prescreening method for fragment-based lead discovery with enzyme targets and paired successfully with an X-ray crystallography secondary screen.
机译:基于片段的先导发现(FBLD)是一种技术,其中筛选出6至15个重原子的小,低复杂度的化学片段以结合或抑制靶标的活性。然后将命中链接和/或修饰成紧密结合的配体,理想地产生用于药物发现的早期先导化合物。量热法提供了一种不受标记的方法来测定结合力和酶活性,该方法不受样品光谱性质的影响。常规的微量量热法因需要大量试剂和较长的测量时间而受到阻碍。纳米量热仪可以克服常规等温滴定量热法的这些局限性。在这里,我们使用焓计阵列,即纳米量热仪的阵列,对磷酸二酯酶10A(PDE10A)的竞争性抑制剂进行基于酶活性的片段筛选。鉴定出了K_I <2 mM的两打碎片,并进行了晶体浸泡试验。所有浸泡实验均产生高分辨率衍射,其中三分之二的碎片产生与PDE10A的高分辨率共晶体结构。结构信息用于详细说明片段命中,并产生KI <1μM的潜在客户。这项研究显示了阵列量热法如何可以用作基于片段的铅靶标与酶靶标的预筛选方法,以及如何与X射线晶体学二次筛选成功配对。

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