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利用自组装单分子层解吸电离质谱法开发新型无标记高通量精氨酸酶-1检测法。

Development of a Novel Label-Free and High-Throughput Arginase-1 Assay Using Self-Assembled Monolayer Desorption Ionization Mass Spectrometry.

机构信息

SAMDI Tech, Chicago, IL, USA.

出版信息

SLAS Discov. 2021 Jul;26(6):775-782. doi: 10.1177/24725552211000677. Epub 2021 Mar 23.

DOI:10.1177/24725552211000677
PMID:33754845
Abstract

Arginase-1, an enzyme that catalyzes the reaction of L-arginine to L-ornithine, is implicated in the tumor immune response and represents an interesting therapeutic target in immuno-oncology. Initiating arginase drug discovery efforts remains a challenge due to a lack of suitable high-throughput assay methodologies. This report describes the combination of self-assembled monolayers and matrix-assisted laser desorption ionization mass spectrometry to enable the first label-free and high-throughput assay for arginase activity. The assay was optimized for kinetically balanced conditions and miniaturized, while achieving a robust assay (Z-factor > 0.8) and a significant assay window [signal-to-background ratio > 20] relative to fluorescent approaches. To validate the assay, the inhibition of the reference compound nor-NOHA (Nω-hydroxy-nor-L-arginine) was evaluated, and the IC measured to be in line with reported results (IC = 180 nM). The assay was then used to complete a screen of 175,000 compounds, demonstrating the high-throughput capacity of the approach. The label-free format also eliminates opportunities for false-positive results due to interference from library compounds and optical readouts. The assay methodology described here enables new opportunities for drug discovery for arginase and, due to the assay flexibility, can be more broadly applicable for measuring other amino acid-metabolizing enzymes.

摘要

精氨酸酶-1 是一种催化 L-精氨酸转化为 L-鸟氨酸的酶,它与肿瘤免疫反应有关,是免疫肿瘤学中一个很有前途的治疗靶点。由于缺乏合适的高通量检测方法,启动精氨酸酶药物研发仍然具有挑战性。本报告介绍了自组装单分子层和基质辅助激光解吸电离质谱的结合,以实现首个无标记和高通量的精氨酸酶活性检测方法。该方法针对动力学平衡条件进行了优化,并进行了小型化处理,同时实现了稳健的检测(Z 因子>0.8)和显著的检测窗口[信号与背景比>20],优于荧光方法。为了验证该检测方法,评估了参考化合物 nor-NOHA(Nω-羟基-nor-L-精氨酸)的抑制作用,并测量了 IC50,结果与报道的结果一致(IC50=180 nM)。然后,该检测方法被用于对 175000 种化合物进行筛选,证明了该方法的高通量能力。无标记格式还消除了由于文库化合物和光学读数的干扰而导致假阳性结果的机会。本文描述的检测方法为精氨酸酶的药物发现提供了新的机会,并且由于该检测方法具有灵活性,因此可以更广泛地应用于测量其他氨基酸代谢酶。

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