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腺相关病毒 1 型的构象变化是由基因组包装引起的。

Conformational changes in adeno-associated virus type 1 induced by genome packaging.

机构信息

Division of Tumor Virology, German Cancer Research Center, Im Neuenheimerfeld, Heidelberg, Germany.

出版信息

J Mol Biol. 2011 Jun 10;409(3):427-38. doi: 10.1016/j.jmb.2011.03.062. Epub 2011 Apr 2.

Abstract

Adeno-associated virus (AAV) is frequently used as a vector for gene therapy. The viral capsid consists of three structural proteins (VP1, VP2, and VP3) that have a common C-terminal core (VP3), with N-terminal extensions of increasing length in VP2 and VP1. The capsid encloses a single-stranded genome of up to 4.7 kb, which is packaged into empty capsids. The N-terminal extension of VP1 carries a phospholipase domain that becomes accessible during infection in the endosomal pathway. We have used cryo-electron microscopy and image reconstruction to determine subnanometer-resolution structures of recombinant AAV1 that has packaged different amounts of a 3.6-kb recombinant genome. The maps show that the AAV1 capsid undergoes continuous conformational changes upon packaging of the genome. The rearrangements occur at the inner capsid surface and lead to constrictions of the pores at the 5-fold symmetry axes and to subtle movements of the β-sheet regions of the capsid proteins. In fully packaged particles, the genome forms stem-like features that contact the inner capsid surface at the 3-fold symmetry axes. We think that the reorganization of the inner surface has an impact on the viral life cycle during infection, preparing the externalization of phospholipase domains through the pores at the 5-fold symmetry axes and possibly genome release.

摘要

腺相关病毒 (AAV) 常被用作基因治疗的载体。病毒衣壳由三种结构蛋白 (VP1、VP2 和 VP3) 组成,它们具有共同的 C 端核心 (VP3),VP2 和 VP1 的 N 端延伸长度逐渐增加。衣壳包含一个长达 4.7kb 的单链基因组,该基因组被包装为空衣壳。VP1 的 N 端延伸携带一个磷脂酶结构域,在进入内体途径的感染过程中变得可及。我们使用低温电子显微镜和图像重建来确定包装不同量 3.6kb 重组基因组的重组 AAV1 的亚纳米分辨率结构。图谱显示,AAV1 衣壳在包装基因组时会发生连续的构象变化。这些重排发生在内衣壳表面,导致 5 倍对称轴上的孔收缩,并导致衣壳蛋白的β-折叠区域发生微妙运动。在完全包装的颗粒中,基因组形成类似于茎的特征,在 3 倍对称轴处与内衣壳表面接触。我们认为,内部表面的重组会影响感染过程中的病毒生命周期,通过 5 倍对称轴上的孔准备外显磷脂酶结构域,并可能释放基因组。

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