Department of Biochemistry and Molecular Biology, Center for Structural Biology, McKnight Brain Institute, College of Medicine, University of Florida, Gainesville, Florida, USA.
J Virol. 2013 Oct;87(20):11187-99. doi: 10.1128/JVI.00867-13. Epub 2013 Aug 7.
The adeno-associated viruses (AAVs) display differential cell binding, transduction, and antigenic characteristics specified by their capsid viral protein (VP) composition. Toward structure-function annotation, the crystal structure of AAV5, one of the most sequence diverse AAV serotypes, was determined to 3.45-Å resolution. The AAV5 VP and capsid conserve topological features previously described for other AAVs but uniquely differ in the surface-exposed HI loop between βH and βI of the core β-barrel motif and have pronounced conformational differences in two of the AAV surface variable regions (VRs), VR-IV and VR-VII. The HI loop is structurally conserved in other AAVs despite amino acid differences but is smaller in AAV5 due to an amino acid deletion. This HI loop is adjacent to VR-VII, which is largest in AAV5. The VR-IV, which forms the larger outermost finger-like loop contributing to the protrusions surrounding the icosahedral 3-fold axes of the AAVs, is shorter in AAV5, creating a smoother capsid surface topology. The HI loop plays a role in AAV capsid assembly and genome packaging, and VR-IV and VR-VII are associated with transduction and antigenic differences, respectively, between the AAVs. A comparison of interior capsid surface charge and volume of AAV5 to AAV2 and AAV4 showed a higher propensity of acidic residues but similar volumes, consistent with comparable DNA packaging capacities. This structure provided a three-dimensional (3D) template for functional annotation of the AAV5 capsid with respect to regions that confer assembly efficiency, dictate cellular transduction phenotypes, and control antigenicity.
腺相关病毒(AAV)表现出不同的细胞结合、转导和抗原特性,这些特性由其衣壳病毒蛋白(VP)组成决定。为了进行结构-功能注释,我们确定了 AAV5 的晶体结构,AAV5 是序列差异最大的 AAV 血清型之一,分辨率达到 3.45 Å。AAV5 的 VP 和衣壳保留了以前描述的其他 AAV 所具有的拓扑特征,但在核心 β-桶结构βH 和 βI 之间的表面暴露 HI 环上具有独特的差异,并且在两个 AAV 表面可变区(VR)中具有明显的构象差异,即 VR-IV 和 VR-VII。尽管氨基酸存在差异,但其他 AAV 中的 HI 环在结构上是保守的,但由于氨基酸缺失,AAV5 中的 HI 环较小。该 HI 环与 VR-VII 相邻,VR-VII 在 AAV5 中最大。VR-IV 形成较大的最外层指状环,有助于围绕 AAV 二十面体 3 重轴的突起,在 AAV5 中较短,从而使衣壳表面拓扑结构更平滑。HI 环在 AAV 衣壳组装和基因组包装中起作用,而 VR-IV 和 VR-VII 分别与 AAV 之间的转导和抗原差异有关。AAV5 与 AAV2 和 AAV4 的衣壳内部表面电荷和体积的比较表明,酸性残基的倾向性更高,但体积相似,这与可比的 DNA 包装能力一致。该结构为 AAV5 衣壳的功能注释提供了一个三维(3D)模板,涉及到提高组装效率、决定细胞转导表型和控制抗原性的区域。