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Cryoelectron Microscopy Analysis of the Structural Changes Associated with Human Rhinovirus Type 14 Uncoating

机译:冷冻电子显微镜分析与人鼻病毒14型脱膜有关的结构变化

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摘要

Release of the human rhinovirus (HRV) genome into the cytoplasm of the cell involves a concerted structural modification of the viral capsid. The intracellular adhesion molecule 1 (ICAM-1) cellular receptor of the major-group HRVs and the low-density lipoprotein (LDL) receptor of the minor-group HRVs have different nonoverlapping binding sites. While ICAM-1 binding catalyzes uncoating, LDL receptor binding does not. Uncoating of minor-group HRVs is initiated by the low pH of late endosomes. We have studied the conformational changes concomitant with uncoating in the major-group HRV14 and compared them with previous results for the minor-group HRV2. The structure of empty HRV14 was determined by cryoelectron microscopy, and the atomic structure of native HRV14 was used to examine the conformational changes of the capsid and its constituent viral proteins. For both HRV2 and HRV14, the transformation from full to empty capsid involves an overall 4% expansion and an iris type of movement of viral protein VP1 to open up a 10-Å-diameter channel on the fivefold axis to allow exit of the RNA genome. The β-cylinders formed by the N termini of the VP3 molecules inside the capsid on the fivefold axis all open up in HRV2, but we propose that only one opens up in HRV14. The release of VP4 is less efficient in HRV14 than in HRV2, and the N termini of VP1 may exit at different points. The N-terminal loop of VP2 is modified in both viruses, probably to detach the RNA, but it bends only inwards in HRV2.
机译:人鼻病毒(HRV)基因组释放到细胞质中涉及病毒衣壳的协同结构修饰。主要组HRV的细胞内粘附分子1(ICAM-1)细胞受体和次要组HRV的低密度脂蛋白(LDL)受体具有不同的不重叠结合位点。虽然ICAM-1结合可催化脱膜,但LDL受体结合则不能。晚期HRVS的pH低会导致少数HRV脱膜。我们研究了HRV14大组中伴随脱膜的构象变化,并将其与先前HRV2的结果进行了比较。通过冷冻电子显微镜确定空HRV14的结构,并使用天然HRV14的原子结构检查衣壳及其组成病毒蛋白的构象变化。对于HRV2和HRV14,从完全衣壳到空衣壳的转化涉及整体4%的扩增和病毒蛋白VP1运动的虹膜类型,从而在五倍轴上打开了直径10的通道,从而允许RNA基因组的退出。由衣壳内五倍轴上的VP3分子的N末端形成的β圆柱在HRV2中全部开放,但我们建议在HRV14中仅开放一个。在HRV14中释放VP4的效率不如在HRV2中释放,并且VP1的N末端可能在不同点退出。 VP2的N末端环在两种病毒中均被修饰,可能会分离RNA,但在HRV2中仅向内弯曲。

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