Bardelli Martino, Zárate-Pérez Francisco, Agúndez Leticia, Linden R Michael, Escalante Carlos R, Henckaerts Els
Department of Infectious Diseases, King's College London, London, United Kingdom.
Department of Physiology and Biophysics, Virginia Commonwealth University School of Medicine, Richmond, Virginia, USA.
J Virol. 2016 Jul 11;90(15):6612-6624. doi: 10.1128/JVI.00356-16. Print 2016 Aug 1.
The life cycle of the human parvovirus adeno-associated virus (AAV) is orchestrated by four Rep proteins. The large Rep proteins, Rep78 and Rep68, are remarkably multifunctional and display a range of biochemical activities, including DNA binding, nicking, and unwinding. Functionally, Rep78 and Rep68 are involved in transcriptional regulation, DNA replication, and genomic integration. Structurally, the Rep proteins share an AAA(+) domain characteristic of superfamily 3 helicases, with the large Rep proteins additionally containing an N-terminal origin-binding domain (OBD) that specifically binds and nicks DNA. The combination of these domains, coupled with dynamic oligomerization properties, is the basis for the remarkable multifunctionality displayed by Rep68 and Rep78 during the AAV life cycle. In this report, we describe an oligomeric interface formed by Rep68 and demonstrate how disruption of this interface has drastic effects on both the oligomerization and functionality of the Rep proteins. Our results support a role for the four-helix bundle in the helicase domain of Rep68 as a bona fide oligomerization domain (OD). We have identified key residues in the OD that are critical for the stabilization of the Rep68-Rep68 interface; mutation of these key residues disrupts the enzymatic activities of Rep68, including DNA binding and nicking, and compromises viral DNA replication and transcriptional regulation of the viral promoters. Taken together, our data contribute to our understanding of the dynamic and substrate-responsive Rep78/68 oligomerization that is instrumental in the regulation of the DNA transitions that take place during the AAV life cycle.
The limited genome size of small viruses has driven the evolution of highly multifunctional proteins that integrate different domains and enzymatic activities within a single polypeptide. The Rep68 protein from adeno-associated virus (AAV) combines a DNA binding and endonuclease domain with a helicase-ATPase domain, which together support DNA replication, transcriptional regulation, and site-specific integration. The coordination of the enzymatic activities of Rep68 remains poorly understood; however, Rep68 oligomerization and Rep68-DNA interactions have been suggested to play a crucial role. We investigated the determinants of Rep68 oligomerization and identified a hydrophobic interface necessary for Rep68 activity during the AAV life cycle. Our results provide new insights into the molecular mechanisms underlying the regulation of the versatile Rep proteins. Efficient production of AAV-based gene therapy vectors requires optimal Rep expression levels, and studies such as the one presented here could contribute to further optimization of AAV production schemes.
人细小病毒腺相关病毒(AAV)的生命周期由四种Rep蛋白精心编排。大型Rep蛋白Rep78和Rep68具有显著的多功能性,并表现出一系列生化活性,包括DNA结合、切口形成和解旋。在功能上,Rep78和Rep68参与转录调控、DNA复制和基因组整合。在结构上,Rep蛋白具有超家族3解旋酶特有的AAA(+)结构域,大型Rep蛋白还含有一个N端起源结合结构域(OBD),该结构域能特异性结合并切割DNA。这些结构域的组合,再加上动态寡聚化特性,是Rep68和Rep78在AAV生命周期中展现出显著多功能性的基础。在本报告中,我们描述了由Rep68形成的寡聚界面,并展示了该界面的破坏如何对Rep蛋白的寡聚化和功能产生巨大影响。我们的结果支持Rep68解旋酶结构域中的四螺旋束作为一个真正的寡聚结构域(OD)发挥作用。我们已经确定了OD中对Rep68-Rep68界面稳定至关重要的关键残基;这些关键残基的突变会破坏Rep68的酶活性,包括DNA结合和切口形成,并损害病毒DNA复制和病毒启动子的转录调控。综上所述,我们的数据有助于我们理解动态且对底物有反应的Rep78/68寡聚化,这在AAV生命周期中发生的DNA转变调控中起重要作用。
小型病毒有限的基因组大小推动了高度多功能蛋白的进化,这些蛋白在单个多肽中整合了不同的结构域和酶活性。腺相关病毒(AAV)的Rep68蛋白将DNA结合和内切酶结构域与解旋酶-ATP酶结构域结合在一起,共同支持DNA复制、转录调控和位点特异性整合。Rep68酶活性的协调机制仍知之甚少;然而,Rep68寡聚化和Rep68-DNA相互作用被认为起着关键作用。我们研究了Rep68寡聚化的决定因素,并确定了AAV生命周期中Rep68活性所必需的疏水界面。我们的结果为多功能Rep蛋白调控的分子机制提供了新的见解。基于AAV的基因治疗载体的高效生产需要最佳的Rep表达水平,像本文所展示的这样的研究有助于进一步优化AAV生产方案。