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AAV2 Rep68 与 ssDNA 复合物的冷冻电镜结构揭示了一种可塑的 AAA+机器,它可以在寡聚状态之间切换。

The Cryo-EM structure of AAV2 Rep68 in complex with ssDNA reveals a malleable AAA+ machine that can switch between oligomeric states.

机构信息

Department of Physiology and Biophysics, Virginia Commonwealth University School of Medicine, Richmond, VA, USA.

Department of Medicinal Chemistry, School of Pharmacy, Virginia Commonwealth University School of Medicine, Richmond, VA, USA.

出版信息

Nucleic Acids Res. 2020 Dec 16;48(22):12983-12999. doi: 10.1093/nar/gkaa1133.

Abstract

The adeno-associated virus (AAV) non-structural Rep proteins catalyze all the DNA transactions required for virus viability including, DNA replication, transcription regulation, genome packaging, and during the latent phase, site-specific integration. Rep proteins contain two multifunctional domains: an Origin Binding Domain (OBD) and a SF3 helicase domain (HD). Studies have shown that Rep proteins have a dynamic oligomeric behavior where the nature of the DNA substrate molecule modulates its oligomeric state. In the presence of ssDNA, Rep68 forms a large double-octameric ring complex. To understand the mechanisms underlying AAV Rep function, we investigated the cryo-EM and X-ray structures of Rep68-ssDNA complexes. Surprisingly, Rep68 generates hybrid ring structures where the OBD forms octameric rings while the HD forms heptamers. Moreover, the binding to ATPγS promotes a large conformational change in the entire AAA+ domain that leads the HD to form both heptamer and hexamers. The HD oligomerization is driven by an interdomain linker region that acts as a latch to 'catch' the neighboring HD subunit and is flexible enough to permit the formation of different stoichiometric ring structures. Overall, our studies show the structural basis of AAV Rep's structural flexibility required to fulfill its multifunctional role during the AAV life cycle.

摘要

腺相关病毒 (AAV) 非结构 Rep 蛋白催化病毒存活所需的所有 DNA 转化,包括 DNA 复制、转录调控、基因组包装,以及在潜伏阶段的特异性整合。Rep 蛋白包含两个多功能结构域:一个原点结合结构域 (OBD) 和一个 SF3 解旋酶结构域 (HD)。研究表明,Rep 蛋白具有动态寡聚行为,DNA 底物分子的性质调节其寡聚状态。在 ssDNA 存在的情况下,Rep68 形成一个大的双八聚体环复合物。为了了解 AAV Rep 功能的机制,我们研究了 Rep68-ssDNA 复合物的 cryo-EM 和 X 射线结构。令人惊讶的是,Rep68 产生了混合环结构,其中 OBD 形成八聚体环,而 HD 形成七聚体。此外,ATPγS 的结合促进整个 AAA+ 结构域的大构象变化,导致 HD 形成七聚体和六聚体。HD 寡聚化是由一个结构域间连接区驱动的,该连接区充当“捕捉”相邻 HD 亚基的闩锁,并且足够灵活以允许形成不同的计量环结构。总体而言,我们的研究表明,AAV Rep 结构灵活性的结构基础是满足其在 AAV 生命周期中的多功能作用所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0886/7736791/35ebff626bd4/gkaa1133fig1.jpg

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