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Structures of Coxsackievirus A10 unveil the molecular mechanisms of receptor binding and viral uncoating

机译:柯萨奇病毒A10的结构揭示了受体结合和病毒脱膜的分子机制

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Coxsackievirus A10 (CVA10), a human type-A Enterovirus (HEV-A), can cause diseases ranging from hand-foot-and-mouth disease to polio-myelitis-like disease. CVA10, together with some other HEV-As, utilizing the molecule KREMEN1 as an entry receptor, constitutes a KREMEN1-dependent subgroup within HEV-As. Currently, there is no vaccine or antiviral therapy available for treating diseases caused by CVA10. The atomic-resolution structure of the CVA10 virion, which is?within the KREMEN1-dependent subgroup, shows significant conformational differences in the putative receptor binding sites and serotype-specific epitopes, when compared to the SCARB2-dependent subgroup of HEV-A, such as EV71, highlighting specific differences between the sub-groups. We also report two expanded structures of CVA10, an empty particle and uncoating intermediate at atomic resolution, as well as a medium-resolution genome structure reconstructed using a symmetry-mismatch method. Structural comparisons coupled with previous results, reveal an ordered signal transmission process for enterovirus uncoating, converting exo-genetic receptor-attachment inputs into a generic RNA release mechanism.
机译:柯萨奇病毒A10(CVA10)是一种人类A型肠病毒(HEV-A),可引起从手足口病到脊髓灰质炎等疾病。 CVA10与其他一些HEV-A一起,利用分子KREMEN1作为进入受体,构成了HEV-As中依赖KREMEN1的亚组。当前,没有疫苗或抗病毒疗法可用于治疗由CVA10引起的疾病。与HEV-A的SCARB2依赖性亚组相比,CVA10病毒体的原子分辨结构位于KREMEN1依赖性亚组内,在推定的受体结合位点和血清型特异性表位上显示出显着的构象差异,例如作为EV71,突出显示了子组之间的特定差异。我们还报告了CVA10的两种扩展结构,即原子分辨率的空颗粒和脱膜中间体,以及使用对称错配方法重建的中等分辨率基因组结构。结构比较与先前的结果相结合,揭示了肠道病毒脱壳的有序信号传输过程,将外遗传受体附着输入转化为通用的RNA释放机制。

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