Biphasic hCAR Inhibition-Activation by Two Aminoazo Liver Carcinogens

K. Bogen
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引用次数: 2

Abstract

Detailed dose-response data recently archived by the National Center for Biotechnology Information (NCBI) identified 853 human CAR (hCAR) agonists by quantitative high-throughput screening (qHTS) assays applied to >9,000 chemicals tested at ≥14 concentrations using n = 3–48 replicates. By re-examining NCBI data on 746 agonists with replicate data sets each satisfying additional quality criteria, ∼95% had average values of agonist-specific Hill-model slopes estimated by NCBI that exceed 1 (i.e., exhibited an overall sublinear low-dose dose-response), and two unambiguously biphasic hCAR inhibitor-agonists were identified, 4-aminoazobenzene (n = 37) and ortho-aminoazotoluene (n = 3), both of which also cause rodent liver tumors. Although evidently rare among hCAR agonists, such biphasic responses add to evidence that nuclear receptors can exhibit complex patterns of low-dose response, consistent with previous observations and theoretical predictions for endpoints governed by ultrasensitive molecular switches. The pronounced biphasic hCAR response pattern observed for 4-aminoazobenzene is particularly noteworthy insofar as it was identified with statistical power that exceeds that of most if not all other receptor-mediated biphasic cellular responses to any single-chemical exposure reported to date.
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双相hCAR抑制-两种氨基偶氮肝癌物质的激活
美国国家生物技术信息中心(NCBI)最近存档的详细剂量反应数据通过定量高通量筛选(qHTS)分析确定了853种人类CAR(hCAR)激动剂,该分析应用于9000多种化学物质,在≥14个浓度下进行测试,使用n=3-48个重复。通过重新检查746种激动剂的NCBI数据,每个数据集都满足额外的质量标准,~95%的激动剂特异性Hill模型斜率的平均值超过1(即,表现出总体亚线性低剂量剂量反应),并确定了两种明确的双相hCAR抑制剂激动剂,4-氨基偶氮苯(n=37)和邻氨基偶氮甲苯(n=3),这两种物质也会引起啮齿动物的肝肿瘤。尽管在hCAR激动剂中明显罕见,但这种双相反应增加了核受体可以表现出复杂的低剂量反应模式的证据,这与之前对超灵敏分子开关控制的终点的观察和理论预测一致。对4-氨基偶氮苯观察到的明显的双相hCAR反应模式特别值得注意,因为它的统计能力超过了迄今为止报道的任何单一化学暴露的大多数(如果不是所有的话)其他受体介导的双相细胞反应。
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