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腺相关病毒衣壳稳定性与动力学的比较分析。

Comparative analysis of adeno-associated virus capsid stability and dynamics.

机构信息

Department of Chemistry and Biochemistry, Montana State University, Bozeman Montana, USA.

出版信息

J Virol. 2013 Dec;87(24):13150-60. doi: 10.1128/JVI.01415-13. Epub 2013 Sep 25.

Abstract

Icosahedral viral capsids are obligated to perform a thermodynamic balancing act. Capsids must be stable enough to protect the genome until a suitable host cell is encountered yet be poised to bind receptor, initiate cell entry, navigate the cellular milieu, and release their genome in the appropriate replication compartment. In this study, serotypes of adeno-associated virus (AAV), AAV1, AAV2, AAV5, and AAV8, were compared with respect to the physical properties of their capsids that influence thermodynamic stability. Thermal stability measurements using differential scanning fluorimetry, differential scanning calorimetry, and electron microscopy showed that capsid melting temperatures differed by more than 20°C between the least and most stable serotypes, AAV2 and AAV5, respectively. Limited proteolysis and peptide mass mapping of intact particles were used to investigate capsid protein dynamics. Active hot spots mapped to the region surrounding the 3-fold axis of symmetry for all serotypes. Cleavages also mapped to the unique region of VP1 which contains a phospholipase domain, indicating transient exposure on the surface of the capsid. Data on the biophysical properties of the different AAV serotypes are important for understanding cellular trafficking and is critical to their production, storage, and use for gene therapy. The distinct differences reported here provide direction for future studies on entry and vector production.

摘要

二十面体病毒衣壳必须执行热力学平衡行为。衣壳必须足够稳定,以保护基因组,直到遇到合适的宿主细胞,但又必须准备好与受体结合,启动细胞进入,在细胞环境中导航,并在适当的复制隔室中释放其基因组。在这项研究中,腺相关病毒 (AAV) 的血清型 AAV1、AAV2、AAV5 和 AAV8 就影响热力学稳定性的衣壳物理性质进行了比较。使用差示扫描荧光法、差示扫描量热法和电子显微镜进行的热稳定性测量表明,最不稳定和最稳定的血清型 AAV2 和 AAV5 之间的衣壳熔化温度相差超过 20°C。完整颗粒的有限蛋白水解和肽质量图谱用于研究衣壳蛋白动力学。所有血清型的 3 倍轴周围的区域都有活性热点。切割也映射到 VP1 的独特区域,其中包含一个磷脂酶结构域,表明在衣壳表面瞬时暴露。不同 AAV 血清型的生物物理特性数据对于理解细胞运输很重要,对于它们的生产、储存和用于基因治疗至关重要。这里报道的明显差异为进一步研究进入和载体生产提供了方向。

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