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A High Throughput Assay to Identify Small Molecule Modulators of Prostatic Acid Phosphatase

机译:一种高通量检测方法,用于鉴定前列腺酸性磷酸酶的小分子调节剂

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摘要

Prostatic acid phosphatase (PAP) is expressed in nociceptive neurons and functions as an ectonucleotidase. Injection of the secretory isoform of PAP has potent antinociceptive effects in mouse models of chronic pain. These data suggested that a small molecule activator of PAP may have utility as a novel therapeutic for chronic pain, while inhibitors could be used to acutely inhibit PAP in vitro and in vivo. To identify small molecule modulators of PAP activity, we validated a high throughput, fluorescence-based biochemical assay and then used this assay to screen a compound library. We decreased the frequency of false positive activators by subtracting compound fluorescence from the final assay fluorescence. This approach significantly reduced the number of false positive activators found in the screen. While no activators were confirmed, seven novel inhibitors of PAP were identified. Our results suggest this high throughput assay could be used to identify small molecule modulators of PAP activity.
机译:前列腺酸磷酸酶(PAP)在伤害性神经元中表达,并起胞外核苷酸酶的作用。注射PAP的分泌同工型在慢性疼痛的小鼠模型中具有有效的镇痛作用。这些数据表明,PAP的小分子激活剂可用作慢性疼痛的新型疗法,而抑制剂可用于在体外和体内急性抑制PAP。为了鉴定PAP活性的小分子调节剂,我们验证了高通量,基于荧光的生化测定,然后使用该测定来筛选化合物库。通过从最终测定的荧光中减去化合物荧光,我们降低了假阳性激活剂的频率。这种方法大大减少了在屏幕上发现的假阳性激活剂的数量。尽管未确认激活剂,但已鉴定出七种新型PAP抑制剂。我们的结果表明,该高通量测定法可用于鉴定PAP活性的小分子调节剂。

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