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由CRISPR/Cas9诱导外显子跳跃产生的人IFNAR2突变体在IFNβ刺激后上调了一部分类似张力的干扰素刺激基因。

Human IFNAR2 Mutant Generated by CRISPR/Cas9-Induced Exon Skipping Upregulates a Subset of Tonic-Like Interferon-Stimulated Genes Upon IFNβ Stimulation.

作者信息

Zhang Linnan, Ma Jianping, Jin Xiaoyang, Zhang Liwei, Zhang Mengfan, Li Patrick Z, Li Jingyun, Zhang Liguo

机构信息

Key Laboratory of Infection and Immunity, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

J Interferon Cytokine Res. 2022 Nov;42(11):580-589. doi: 10.1089/jir.2022.0158. Epub 2022 Nov 8.

Abstract

Type I interferons (IFN-Is) play central roles in regulating immune responses. The role of IFNAR2 in IFN-I signaling is an open question since a previous report showed that IFNβ was still functional in the absence of IFNAR2 in mice. In this study, we report that IFN-I signaling in human monocyte-derived THP1 cells absolutely depends on IFNAR2, as determined by using a knockout mutant made by CRISPR/Cas9. Additionally, we demonstrated that a 7-bp deletion mutant (Δ7) of IFNAR2 remains responsive to IFNβ stimulation and upregulates a subset of interferon-stimulated genes (s-ISGs). The s-ISGs largely overlap with tonic ISGs, which depend on the basal expression level of IFN-I. We also showed that IFN signaling in Δ7 still depends on IFNAR2. Then, we found that the 7-bp deletion in the genome results in the loss of the entire third exon (42 bp) from the mRNA and in the expression of a functionally impaired IFNAR2. These findings clarified the requirement of IFNAR2 for human IFN-I signaling and highlighted that caution should be used with CRISPR/Cas9 technology to prevent misleading interpretations caused by residual protein expression due to exon skipping or other mechanisms.

摘要

I型干扰素(IFN-Is)在调节免疫反应中起核心作用。由于之前有报道称在小鼠中缺乏IFNAR2时IFNβ仍具有功能,因此IFNAR2在IFN-I信号传导中的作用仍是一个悬而未决的问题。在本研究中,我们报告称,通过使用CRISPR/Cas9制备的基因敲除突变体确定,人单核细胞衍生的THP1细胞中的IFN-I信号传导绝对依赖于IFNAR2。此外,我们证明IFNAR2的一个7碱基缺失突变体(Δ7)仍然对IFNβ刺激有反应,并上调了一部分干扰素刺激基因(s-ISGs)。这些s-ISGs与依赖于IFN-I基础表达水平的持续性ISGs在很大程度上重叠。我们还表明,Δ7中的IFN信号传导仍然依赖于IFNAR2。然后,我们发现基因组中的7碱基缺失导致mRNA中整个第三个外显子(42bp)缺失,并导致功能受损的IFNAR2的表达。这些发现阐明了IFNAR2对人IFN-I信号传导至关重要,并强调在使用CRISPR/Cas9技术时应谨慎,以防止由于外显子跳跃或其他机制导致的残留蛋白表达引起误导性解读。

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