首页> 美国卫生研究院文献>Journal of Virology >The ESEV PDZ-Binding Motif of the Avian Influenza A Virus NS1 Protein Protects Infected Cells from Apoptosis by Directly Targeting Scribble
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The ESEV PDZ-Binding Motif of the Avian Influenza A Virus NS1 Protein Protects Infected Cells from Apoptosis by Directly Targeting Scribble

机译:禽流感病毒NS1蛋白的ESEV PDZ结合基序通过直接靶向涂抹来保护感染细胞免于凋亡

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摘要

The NS1 protein from influenza A viruses contains a four-amino-acid sequence at its carboxyl terminus that is termed the PDZ-binding motif (PBM). The NS1 PBM is predicted to bind to cellular PDZ proteins and functions as a virulence determinant in infected mice. ESEV is the consensus PBM sequence of avian influenza viruses, while RSKV is the consensus sequence of human viruses. Currently circulating highly pathogenic H5N1 influenza viruses encode an NS1 protein with the ESEV PBM. We identified cellular targets of the avian ESEV PBM and identified molecular mechanisms involved in its function. Using glutathione S-transferase (GST) pull-down assays, we found that the ESEV PBM enables NS1 to associate with the PDZ proteins Scribble, Dlg1, MAGI-1, MAGI-2, and MAGI-3. Because Scribble possesses a proapoptotic activity, we investigated the interaction between NS1 and Scribble. The association between NS1 and Scribble is direct and requires the ESEV PBM and two Scribble PDZ domains. We constructed recombinant H3N2 viruses that encode an H6N6 avian virus NS1 protein with either an ESEV or mutant ESEA PBM, allowing an analysis of the ESEV PBM in infections in mammalian cells. The ESEV PBM enhanced viral replication up to 4-fold. In infected cells, NS1 with the ESEV PBM relocalized Scribble into cytoplasmic puncta concentrated in perinuclear regions and also protected cells from apoptosis. In addition, the latter effect was eliminated by small interfering RNA (siRNA)-mediated Scribble depletion. This study shows that one function of the avian ESEV PBM is to reduce apoptosis during infection through disruption of Scribble's proapoptotic function.
机译:来自甲型流感病毒的NS1蛋白在其羧基末端包含一个四个氨基酸的序列,称为PDZ结合基序(PBM)。预测NS1 PBM会结合细胞PDZ蛋白,并在感染的小鼠中起毒力决定因素的作用。 ESEV是禽流感病毒的共有PBM序列,而RSKV是人类病毒的共有序列。当前流行的高致病性H5N1流感病毒使用ESEV PBM编码NS1蛋白。我们确定了禽ESEV PBM的细胞靶标,并确定了参与其功能的分子机制。使用谷胱甘肽S-转移酶(GST)下拉测定法,我们发现ESEV PBM使NS1与PDZ蛋白Scribble,Dlg1,MAGI-1,MAGI-2和MAGI-3缔合。由于Scribble具有促凋亡活性,因此我们研究了NS1与Scribble之间的相互作用。 NS1和Scribble之间的关联是直接的,需要ESEV PBM和两个Scribble PDZ域。我们构建了重组H3N2病毒,该病毒编码带有ESEV或突变的ESEA PBM的H6N6禽流感病毒NS1蛋白,从而可以分析哺乳动物细胞感染中的ESEV PBM。 ESEV PBM将病毒复制增强了多达4倍。在受感染的细胞中,带有ESEV PBM的NS1将Scribble重新定位到浓缩在核周区域中的细胞质点中,还可以保护细胞免于凋亡。此外,后一种效应被小干扰RNA(siRNA)介导的自由曲线耗竭所消除。这项研究表明,禽ESEV PBM的功能之一是通过破坏Scribble的促凋亡功能来减少感染期间的细胞凋亡。

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