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通过冷冻电子显微镜和差分图分析解析轮状病毒血凝素VP4的三维结构。

Three-dimensional structure of the rotavirus haemagglutinin VP4 by cryo-electron microscopy and difference map analysis.

作者信息

Yeager M, Berriman J A, Baker T S, Bellamy A R

机构信息

Scripps Research Institute, Departments of Cell and Molecular Biology, La Jolla, CA 92037.

出版信息

EMBO J. 1994 Mar 1;13(5):1011-8. doi: 10.1002/j.1460-2075.1994.tb06349.x.

Abstract

The three-dimensional structure of the rotavirus spike haemagglutinin viral protein 4 (VP4) has been determined to a resolution of 26 A by cryo-electron microscopy and difference analysis of intact virions and smooth (spikeless) particles. Native and spikeless virions were mixed prior to cryo-preservation so that both structures could be determined from the same micrograph, thereby minimizing systematic errors. This mixing strategy was crucial for difference map analysis since VP4 only accounts for approximately 1% of the virion mass. The VP4 spike is multi-domained and has a radial length of approximately 200 A with approximately 110 A projecting from the surface of the virus. Interactions between VP4 and cell surface receptors are facilitated by the bi-lobed head, which allows multi-site interactions, as well as the uniform distribution of the VP4 heads at maximum radius. The bi-lobed head is attached to a square-shaped body formed by two rods that have a slight left-handed helical twist. These rods merge with an angled, rod-like domain connected to a globular base approximately 85 A in diameter. The anchoring base displays pseudo 6-fold symmetry. This surprising finding may represent a novel folding motif in which a single polypeptide of VP4 contributes similar but non-equivalent domains to form the arms of the hexameric base. The VP4 spike penetrates the virion surface approximately 90 A and interacts with both outer (VP7) and inner (VP6) capsid proteins. The extensive VP4-VP7 and VP4-VP6 interactions imply a scaffolding function in which VP4 may participate in maintaining precise geometric register between the inner and outer capsids.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过对完整病毒粒子和平滑(无刺突)颗粒进行冷冻电子显微镜观察和差异分析,已确定轮状病毒刺突血凝素病毒蛋白4(VP4)的三维结构,分辨率为26埃。在冷冻保存之前将天然和无刺突病毒粒子混合,以便可以从同一张显微照片确定两种结构,从而将系统误差降至最低。这种混合策略对于差异图分析至关重要,因为VP4仅占病毒粒子质量的约1%。VP4刺突是多结构域的,径向长度约为200埃,约110埃从病毒表面突出。VP4与细胞表面受体之间的相互作用由双叶头部促进,该头部允许多点相互作用,以及VP4头部在最大半径处的均匀分布。双叶头部连接到由两根杆形成的方形体上,这两根杆有轻微的左旋螺旋扭曲。这些杆与一个成角度的、杆状结构域合并,该结构域连接到一个直径约85埃的球状基部。锚定基部呈现假六倍对称性。这一惊人发现可能代表了一种新的折叠基序,其中VP4的单个多肽贡献相似但不等价的结构域以形成六聚体基部的臂。VP4刺突穿透病毒粒子表面约90埃,并与外层(VP7)和内层(VP6)衣壳蛋白相互作用。广泛的VP4-VP7和VP4-VP6相互作用意味着一种支架功能,其中VP4可能参与维持内外衣壳之间精确的几何对齐。(摘要截短于250字)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8606/394908/3299021a46f7/emboj00053-0020-a.jpg

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