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Genomic-Based High Throughput Screening Identifies Small Molecules That Differentially Inhibit the Antiviral and Immunomodulatory Effects of IFN-α

机译:基于基因组的高通量筛选可识别差异性抑制IFN-α的抗病毒和免疫调节作用的小分子。

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摘要

Multiple lines of evidence suggest that inhibition of Type I Interferons, including IFN-α, may provide a therapeutic benefit for autoimmune diseases. Using a chemical genomics approach integrated with cellular and in vivo assays, we screened a small compound library to identify modulators of IFN-α biological effects. A genomic fingerprint was developed from both ex vivo patient genomic information and in vitro gene modulation from IFN-α cell-based stimulation. A high throughput genomic-based screen then was applied to prioritize 268 small molecule inhibitors targeting 41 different intracellular signaling pathways. Active compounds were profiled further for their ability to inhibit the activation and differentiation of human monocytes using disease-related stimuli. Inhibitors targeting NF-κB or Janus Kinase/Signal Transducer and Activator of Transcription (JAK/STAT) signaling emerged as “dissociated inhibitors” because they did not modulate IFN-α anti-viral effects against HSV-1 but potently inhibited other immune-related functions. This work describes a novel strategy to identify small molecule inhibitors for the treatment of autoimmune disorders.
机译:多种证据表明,抑制I型干扰素(包括IFN-α)可为自身免疫性疾病提供治疗益处。使用与细胞和体内试验相结合的化学基因组学方法,我们筛选了一个小的化合物文库,以鉴定IFN-α生物学效应的调节剂。从离体患者的基因组信息和基于IFN-α细胞的刺激的体外基因调节中都开发出了基因组指纹。然后应用基于基因组的高通量筛选,对268种靶向41种不同细胞内信号通路的小分子抑制剂进行优先排序。使用疾病相关刺激进一步分析了活性化合物抑制人类单核细胞激活和分化的能力。靶向NF-κB或Janus激酶/信号转导子和转录激活因子(JAK / STAT)信号的抑制剂以“离解抑制剂”出现,因为它们没有调节针对HSV-1的IFN-α抗病毒作用,但有效抑制了其他与免疫相关的作用功能。这项工作描述了一种识别小分子抑制剂以治疗自身免疫性疾病的新策略。

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