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Insight into the Ebola virus nucleocapsid assembly mechanism: crystal structure of Ebola virus nucleoprotein core domain at 1.8 ? resolution

机译:深入了解埃博拉病毒核衣壳装配机制:埃博拉病毒核蛋白核心结构域的晶体结构为1.8?解析度

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Ebola virus (EBOV) is a key member of Filoviridae family and causes severe human infectious diseases with high morbidity and mortality. As a typical negative-sense single-stranded RNA (?ssRNA) viruses, EBOV possess a nucleocapsid protein (NP) to facilitate genomic RNA encapsidation to form viral ribonucleoprotein complex (RNP) together with genome RNA and polymerase, which plays the most essential role in virus proliferation cycle. However, the mechanism of EBOV RNP formation remains unclear. In this work, we solved the high resolution structure of core domain of EBOV NP. The polypeptide of EBOV NP core domain (NPcore) possesses an N-lobe and C-lobe to clamp a RNA binding groove, presenting similarities with the structures of the other reported viral NPs encoded by the members from Mononegavirales order. Most strikingly, a hydrophobic pocket at the surface of the C-lobe is occupied by an α-helix of EBOV NPcore itself, which is highly conserved among filoviridae family. Combined with other biochemical and biophysical evidences, our results provides great potential for understanding the mechanism underlying EBOV RNP formation via the mobility of EBOV NP element and enables the development of antiviral therapies targeting EBOV RNP formation
机译:埃博拉病毒(EBOV)是费氏病毒科的重要成员,可导致严重的人类传染病,并具有较高的发病率和死亡率。作为典型的负义单链RNA(?ssRNA)病毒,EBOV拥有核衣壳蛋白(NP)来促进基因组RNA衣壳化,与基因组RNA和聚合酶一起形成病毒核糖核蛋白复合体(RNP),这发挥了最重要的作用在病毒增殖周期中。但是,EBOV RNP形成的机制仍不清楚。在这项工作中,我们解决了EBOV NP核心域的高分辨率结构。 EBOV NP核心结构域的多肽(NP core )具有N瓣和C瓣,可钳住RNA结合槽,与其他报道的病毒NP的结构相似, Mononegavirales订单。最为显着的是,C裂片表面的疏水口袋被EBOV NP core 本身的α螺旋占据,在丝虫科中是高度保守的。结合其他生化和生物物理证据,我们的结果为通过EBOV NP元素的迁移性了解EBOV RNP形成的潜在机制提供了巨大的潜力,并能够开发针对EBOV RNP形成的抗病毒疗法

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