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Inhibition of Translation and Induction of Apoptosis by Bunyaviral Nonstructural Proteins Bearing Sequence Similarity to Reaper

机译:具有与收割者序列相似性的Bunyaviral非结构蛋白抑制翻译和诱导细胞凋亡

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摘要

Members of the California serogroup of bunyaviruses (family Bunyaviridae) are the leading cause of pediatric viral encephalitis in North America. Significant cell death is observed as part of the infection pathology. We now report that a Bunyaviral nonstructural protein termed NSs shows sequence similarity to Reaper, a proapoptotic protein from Drosophila. Although NSs proteins lack the Reaper N-terminal motif critical for IAP inhibition, they do retain other functions of Reaper that map to conserved C-terminal regions. Like Reaper, NSs proteins induce mitochondrial cytochrome c release and caspase activation in cell-free extracts and promote neuronal apoptosis and mortality in a mouse model. Independent of caspase activation, Bunyavirus NSs proteins also share with Reaper the ability to directly inhibit cellular protein translation. We have found that the shared capacity to inhibit translation and induce apoptosis resides in common sequence motifs present in both Reaper and NSs proteins. Data presented here suggest that NSs induce apoptosis through a mechanism similar to that used by Reaper, as both proteins bind to an apoptotic regulator called Scythe and can relieve Scythe inhibition of Hsp70. Thus, bunyavirus NSs proteins have multiple Reaper-like functions that likely contribute to viral pathogenesis by promoting cell death and/or inhibiting cellular translation.
机译:加利福尼亚州布尼亚病毒血清群(布尼亚病毒科家族)的成员是北美小儿病毒性脑炎的主要原因。观察到大量细胞死亡是感染病理的一部分。现在,我们报道称为NSs的Bunyaviral非结构蛋白显示与收割者(果蝇的促凋亡蛋白)的序列相似性。尽管NSs蛋白缺少对IAP抑制至关重要的Reaper N末端基序,但它们确实保留了Reaper的其他功能,这些功能映射到保守的C末端区域。像死神一样,NSs蛋白在无细胞提取物中诱导线粒体细胞色素c释放和caspase活化,并在小鼠模型中促进神经元凋亡和死亡率。与半胱天冬酶激活无关,布尼亚病毒NSs蛋白也与Reaper共享直接抑制细胞蛋白翻译的能力。我们发现抑制翻译和诱导细胞凋亡的共同能力存在于收割者和NSs蛋白中常见的序列基序中。此处提供的数据表明,NSs通过与Reaper所用机制相似的机制诱导凋亡,因为这两种蛋白均与称为Scythe的凋亡调节因子结合,并可以减轻Scythe对Hsp70的抑制作用。因此,布尼亚病毒NSs蛋白具有多种类似Reaper的功能,可能通过促进细胞死亡和/或抑制细胞翻译来促进病毒发病。

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