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首页> 外文期刊>PLoS Pathogens >Inclusion bodies of human parainfluenza virus type 3 inhibit antiviral stress granule formation by shielding viral RNAs
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Inclusion bodies of human parainfluenza virus type 3 inhibit antiviral stress granule formation by shielding viral RNAs

机译:纳入体的人偶然血管病毒型通过屏蔽病毒RNA抑制抗病毒应激颗粒形成

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摘要

Viral invasion triggers the activation of the host antiviral response. Besides the innate immune response, stress granules (SGs) also act as an additional defense response to combat viral replication. However, many viruses have evolved various strategies to suppress SG formation to facilitate their own replication. Here, we show that viral mRNAs derived from human parainfluenza virus type 3 (HPIV3) infection induce SG formation in an eIF2α phosphorylation- and PKR-dependent manner in which viral mRNAs are sequestered and viral replication is inhibited independent of the interferon signaling pathway. Furthermore, we found that inclusion body (IB) formation by the interaction of the nucleoprotein (N) and phosphoprotein (P) of HPIV3 correlated with SG suppression. In addition, co-expression of P with NL478A (a point mutant of N, which is unable to form IBs with P) or with NΔN10 (lacking N-terminal 10 amino acids of N, which could form IBs with P but was unable to synthesize or shield viral RNAs) failed to inhibit SG formation, suggesting that inhibition of SG formation also correlates with the capacity of IBs to synthesize and shield viral RNAs. Therefore, we provide a model whereby viral IBs escape the antiviral effect of SGs by concealing their own newly synthesized viral RNAs and offer new insights into the emerging role of IBs in viral replication.
机译:病毒侵袭触发宿主抗病毒反应的激活。除了先天免疫应答外,应激颗粒(SGS)还可作为对抗病毒复制的额外防御反应。然而,许多病毒已经进化了各种策略来抑制SG形成以促进自己的复制。在这里,我们展示了源自人类痹流病毒类型3(HPIV3)感染的病毒MRNA诱导SG形成在EIF2&#x003b1中;磷酸化 - 和PKR依赖性方式,其中病毒MRNA被隔离,并且独立于干扰素信号通路抑制病毒复制。此外,我们发现通过与SG抑制相关的HPIV3的核蛋白(N)和磷蛋白(P)的相互作用形成包涵体(IB)形成。此外,具有N1478a的p的共同表达(n的点突变体,其不能与p)或nΔ n10(缺少n末端10的n氨基酸,其可以与p形成Ibs但是无法合成或屏蔽病毒RNA)未能抑制SG形成,表明SG形成的抑制也与IBS合成和屏蔽病毒RNA的能力相关。因此,我们提供了一种模型,即病毒IBS通过隐藏自己的新合成的病毒RNA来逃避SGS的抗病毒效果,并对IBS在病毒复制中的新兴作用中提供新的见解。

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