Pérez-Berná Ana J, Marabini Roberto, Scheres Sjors H W, Menéndez-Conejero Rosa, Dmitriev Igor P, Curiel David T, Mangel Walter F, Flint S Jane, San Martín Carmen
Department of Macromolecular Structure, Centro Nacional de Biotecnología (CNB-CSIC), Madrid, Spain.
J Mol Biol. 2009 Sep 18;392(2):547-57. doi: 10.1016/j.jmb.2009.06.057. Epub 2009 Jun 27.
Maturation via proteolytic processing is a common trait in the viral world and is often accompanied by large conformational changes and rearrangements in the capsid. The adenovirus protease has been shown to play a dual role in the viral infectious cycle: (a) in maturation, as viral assembly starts with precursors to several of the structural proteins but ends with proteolytically processed versions in the mature virion, and (b) in entry, because protease-impaired viruses have difficulties in endosome escape and uncoating. Indeed, viruses that have not undergone proteolytic processing are not infectious. We studied the three-dimensional structure of immature adenovirus particles as represented by the adenovirus type 2 thermosensitive mutant ts1 grown under non-permissive conditions and compared it with the mature capsid. Our three-dimensional electron microscopy maps at subnanometer resolution indicate that adenovirus maturation does not involve large-scale conformational changes in the capsid. Difference maps reveal the locations of unprocessed peptides pIIIa and pVI and help define their role in capsid assembly and maturation. An intriguing difference appears in the core, indicating a more compact organization and increased stability of the immature cores. We have further investigated these properties by in vitro disassembly assays. Fluorescence and electron microscopy experiments reveal differences in the stability and uncoating of immature viruses, both at the capsid and core levels, as well as disassembly intermediates not previously imaged.
通过蛋白水解加工实现成熟是病毒界的一个共同特征,并且通常伴随着衣壳的大规模构象变化和重排。腺病毒蛋白酶已被证明在病毒感染周期中发挥双重作用:(a)在成熟过程中,由于病毒组装始于几种结构蛋白的前体,但在成熟病毒体中以蛋白水解加工后的形式结束;(b)在进入过程中,因为蛋白酶缺陷型病毒在内体逃逸和脱壳方面存在困难。事实上,未经过蛋白水解加工的病毒没有传染性。我们研究了在非允许条件下生长的2型腺病毒温度敏感突变体ts1所代表的未成熟腺病毒颗粒的三维结构,并将其与成熟衣壳进行了比较。我们在亚纳米分辨率下的三维电子显微镜图谱表明,腺病毒成熟过程不涉及衣壳的大规模构象变化。差异图谱揭示了未加工肽pIIIa和pVI的位置,并有助于确定它们在衣壳组装和成熟中的作用。在核心区域出现了一个有趣的差异,表明未成熟核心的组织更紧凑且稳定性增加。我们通过体外拆解实验进一步研究了这些特性。荧光和电子显微镜实验揭示了未成熟病毒在衣壳和核心水平上的稳定性和脱壳差异,以及以前未成像的拆解中间体。