Hernando-Pérez Mercedes, Martín-González Natalia, Pérez-Illana Marta, Suomalainen Maarit, Condezo Gabriela N, Ostapchuk Philomena, Gallardo José, Menéndez Margarita, Greber Urs F, Hearing Patrick, de Pablo Pedro J, San Martín Carmen
Department of Macromolecular Structures, Centro Nacional de Biotecnología, Consejo Superior de Investigaciones Científicas, 28049 Madrid, Spain.
Department of Condensed Matter Physics, Universidad Autónoma de Madrid, 28049 Madrid, Spain.
Proc Natl Acad Sci U S A. 2020 Jun 16;117(24):13699-13707. doi: 10.1073/pnas.1920896117. Epub 2020 May 28.
Adenovirus minor coat protein VI contains a membrane-disrupting peptide that is inactive when VI is bound to hexon trimers. Protein VI must be released during entry to ensure endosome escape. Hexon:VI stoichiometry has been uncertain, and only fragments of VI have been identified in the virion structure. Recent findings suggest an unexpected relationship between VI and the major core protein, VII. According to the high-resolution structure of the mature virion, VI and VII may compete for the same binding site in hexon; and noninfectious human adenovirus type 5 particles assembled in the absence of VII (Ad5-VII-) are deficient in proteolytic maturation of protein VI and endosome escape. Here we show that Ad5-VII- particles are trapped in the endosome because they fail to increase VI exposure during entry. This failure was not due to increased particle stability, because capsid disruption happened at lower thermal or mechanical stress in Ad5-VII- compared to wild-type (Ad5-wt) particles. Cryoelectron microscopy difference maps indicated that VII can occupy the same binding pocket as VI in all hexon monomers, strongly arguing for binding competition. In the Ad5-VII- map, density corresponding to the immature amino-terminal region of VI indicates that in the absence of VII the lytic peptide is trapped inside the hexon cavity, and clarifies the hexon:VI stoichiometry conundrum. We propose a model where dynamic competition between proteins VI and VII for hexon binding facilitates the complete maturation of VI, and is responsible for releasing the lytic protein from the hexon cavity during entry and stepwise uncoating.
腺病毒次要衣壳蛋白VI含有一种膜破坏肽,当VI与六邻体三聚体结合时该肽无活性。在病毒进入过程中,蛋白VI必须被释放以确保从内体逃逸。六邻体与VI的化学计量关系一直不确定,并且在病毒粒子结构中仅鉴定出VI的片段。最近的研究结果表明VI与主要核心蛋白VII之间存在意想不到的关系。根据成熟病毒粒子的高分辨率结构,VI和VII可能竞争六邻体中的相同结合位点;在没有VII的情况下组装的无感染性人5型腺病毒颗粒(Ad5-VII-)在蛋白VI的蛋白水解成熟和内体逃逸方面存在缺陷。在这里我们表明,Ad5-VII-颗粒被困在内体中,因为它们在进入过程中未能增加VI的暴露。这种失败不是由于颗粒稳定性增加,因为与野生型(Ad5-wt)颗粒相比,Ad5-VII-在较低的热或机械应力下就发生了衣壳破坏。冷冻电子显微镜差异图表明,VII可以在所有六邻体单体中占据与VI相同的结合口袋,有力地证明了存在结合竞争。在Ad5-VII-图中,与VI未成熟的氨基末端区域相对应的密度表明,在没有VII的情况下,裂解肽被困在六邻体腔内,这也阐明了六邻体与VI的化学计量难题。我们提出了一个模型,其中蛋白VI和VII之间对六邻体结合的动态竞争促进了VI的完全成熟,并负责在进入和逐步脱壳过程中从六邻体腔中释放裂解蛋白。