Doi Naoya, Koma Takaaki, Adachi Akio, Nomaguchi Masako
Department of Microbiology, Graduate School of Medical Science, Tokushima University, Tokushima, Japan.
Department of Microbiology, Kansai Medical University, Osaka, Japan.
Front Microbiol. 2019 Aug 7;10:1831. doi: 10.3389/fmicb.2019.01831. eCollection 2019.
Gag proteins underlie retroviral replication by fulfilling numerous functional roles at various stages during viral life cycle. Out of the four mature proteins, Gag-capsid (CA) is a major component of viral particles, and has been most well studied biogenetically, biochemically and structurally. Gag-CA is composed of two structured domains, and also of a short stretch of disordered and flexible interdomain linker. While the two domains, namely, N-terminal and C-terminal domains (NTD and CTD), have been the central target for Gag research, the linker region connecting the two has been poorly studied. We recently have performed systemic mutational analyses on the Gag-CA linker region of HIV-1 by various experimental and systems. In total, we have demonstrated that the linker region acts as a -modulator to optimize the Gag-related viral replication process. We also have noted, during the course of conducting the research project, that HIV-1 and SIVmac, belonging to distinct primate lentiviral lineages, share a similarly biologically active linker region with each other. In this brief article, we summarize and report the results obtained by mutational studies that are relevant to the functional significance of the interdomain linker of HIV/SIV Gag-CA. Based on this investigation, we discuss about the future directions of the research in this line.
Gag蛋白在逆转录病毒生命周期的各个阶段发挥多种功能作用,从而构成了逆转录病毒复制的基础。在四种成熟蛋白中,Gag衣壳蛋白(CA)是病毒颗粒的主要成分,并且在生物发生、生物化学和结构方面得到了最为充分的研究。Gag-CA由两个结构化结构域以及一段短的无序且灵活的结构域间连接区组成。虽然这两个结构域,即N端结构域和C端结构域(NTD和CTD)一直是Gag研究的核心靶点,但连接这两个结构域的连接区却鲜有研究。我们最近通过各种实验和系统对HIV-1的Gag-CA连接区进行了系统性突变分析。总体而言,我们证明了连接区作为一种调节剂来优化与Gag相关的病毒复制过程。我们还在开展该研究项目的过程中注意到,属于不同灵长类慢病毒谱系的HIV-1和SIVmac彼此共享一个具有相似生物学活性的连接区。在这篇简短的文章中,我们总结并报告了与HIV/SIV Gag-CA结构域间连接区功能意义相关的突变研究结果。基于这项研究,我们讨论了该领域未来的研究方向。