Neves-Martins Thais C, Mebus-Antunes Nathane C, Neto Carlos H G, Barbosa Glauce M, Almeida Fabio C L, Caruso Icaro P, Da Poian Andrea T
Instituto de Bioquímica Médica Leopoldo de Meis, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 21941-590 Rio de Janeiro, Brazil.
Centro Nacional de Biologia Estrutural e Bioimagem, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 21941-590 Rio de Janeiro, Brazil.
iScience. 2023 Feb 14;26(3):106197. doi: 10.1016/j.isci.2023.106197. eCollection 2023 Mar 17.
Nucleocapsid (NC) assembly is an essential step of the virus replication cycle. It ensures genome protection and transmission among hosts. Flaviviruses are human viruses for which envelope structure is well known, whereas no information on NC organization is available. Here we designed a dengue virus capsid protein (DENVC) mutant in which a highly positive spot conferred by arginine 85 in α4-helix was replaced by a cysteine residue, simultaneously removing the positive charge and restricting the intermolecular motion through the formation of a disulfide cross-link. We showed that the mutant self-assembles into capsid-like particles (CLP) in solution without nucleic acids. Using biophysical techniques, we investigated capsid assembly thermodynamics, showing that an efficient assembly is related to an increased DENVC stability due to α4/α4' motion restriction. To our knowledge, this is the first time that flaviviruses' empty capsid assembly is obtained in solution, revealing the R85C mutant as a powerful tool to understand the NC assembly mechanism.
核衣壳(NC)组装是病毒复制周期的关键步骤。它确保了基因组的保护以及在宿主间的传播。黄病毒是一类包膜结构为人熟知的人类病毒,然而关于其核衣壳结构组织却尚无信息。在此,我们设计了一种登革病毒衣壳蛋白(DENVC)突变体,其中α4螺旋中由精氨酸85赋予的一个高度带正电的位点被半胱氨酸残基取代,这既消除了正电荷,又通过形成二硫键交联限制了分子间运动。我们发现该突变体在无核酸的溶液中能自组装成类衣壳颗粒(CLP)。利用生物物理技术,我们研究了衣壳组装的热力学,结果表明高效组装与由于α4/α4'运动受限导致的DENVC稳定性增加有关。据我们所知,这是首次在溶液中获得黄病毒的空衣壳组装,这表明R85C突变体是理解核衣壳组装机制的有力工具。