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Alternative splicing coupled with transcript degradation modulates OAS1g antiviral activity

机译:替代剪接与转录物降解调节OAS1G抗病毒活性

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摘要

At the heart of an innate immune response lies a tightly regulated gene expression program. This precise regulation is crucial because small changes can shift the balance from protective to destructive immunity. Here we identify a frequently used alternative splice site in the gene oligoadenylate synthetase 1g (Oas1g), a key component of the 2-5A antiviral system. Usage of this splice site leads to the generation of a transcript subject to decay, and removal of the site leads to increased expression of Oas1g and an improved antiviral response. However, removal of the splice site also leads to an increase in apoptotic cell death, suggesting this splicing event exists as a compromise between the pathogen protective benefits and collateral damage associated with OAS1g activity. Across the innate immune response, we show that a multitude of alternative splicing events predicted to lead to decay exist, and thus have the potential to play a significant role in the regulation of gene expression in innate immunity.
机译:在先天免疫应答的核心处于紧密稳定的基因表达程序。这种精确的调节至关重要,因为小的变化可以将平衡从保护性移植到破坏性免疫力。在这里,我们鉴定了基因寡核酸合成酶1G(OAS1G)中的常用替代剪接位点,是2-5A抗病毒系统的关键组分。该接头位点的使用导致产生衰减的转录物,并且去除该部位导致OAS1G的表达和改善的抗病毒反应增加。然而,去除接头位点也导致凋亡细胞死亡的增加,这表明这种剪接事件存在于与OAS1G活动相关的病原体保护益处和侧支损伤之间的折衷。在天生的免疫反应中,我们表明预测导致衰减的多种替代剪接事件,因此有可能在先天免疫中的基因表达调节中发挥重要作用。

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