Kuopio Center for Gene and Cell Therapy, Kuopio, Finland.
FinVector, Kuopio, Finland.
Sci Rep. 2021 Nov 4;11(1):21698. doi: 10.1038/s41598-021-01220-7.
With a limited coding capacity of 4.7 kb, adeno-associated virus (AAV) genome has evolved over-lapping genes to maximise the usage of its genome. An example is the recently found ORF in the cap gene, encoding membrane-associated accessory protein (MAAP), located in the same genomic region as the VP1/2 unique domain, but in a different reading frame. This 13 KDa protein, unique to the dependovirus genus, is not homologous to any known protein. Our studies confirm that MAAP translation initiates from the first CTG codon found in the VP1 ORF2. We have further observed MAAP localised in the plasma membrane, in the membranous structures in close proximity to the nucleus and to the nuclear envelope by co-transfecting with plasmids encoding the wild-type AAV (wt-AAV) genome and adenovirus (Ad) helper genes. While keeping VP1/2 protein sequence identical, both inactivation and truncation of MAAP translation affected the emergence and intracellular distribution of the AAV capsid proteins. We have demonstrated that MAAP facilitates AAV replication and has a role in controlling Ad infection. Additionally, we were able to improve virus production and capsid integrity through a C-terminal truncation of MAAP while other modifications led to increased packaging of contaminating, non-viral DNA. Our results show that MAAP plays a significant role in AAV infection, with profound implications for the production of therapeutic AAV vectors.
腺相关病毒 (AAV) 的基因组编码能力有限,只有 4.7kb,因此其基因组通过重叠基因来最大化其使用效率。例如,最近在衣壳基因中发现的开放阅读框 (ORF) 编码膜相关辅助蛋白 (MAAP),该基因位于与 VP1/2 独特结构域相同的基因组区域,但处于不同的阅读框。这种 13 kDa 的蛋白是依赖病毒属所特有的,与任何已知蛋白均无同源性。我们的研究证实,MAAP 的翻译起始于 VP1 ORF2 中第一个 CTG 密码子。我们通过共转染编码野生型 AAV(wt-AAV)基因组和腺病毒 (Ad) 辅助基因的质粒,进一步观察到 MAAP 定位于质膜上,在靠近核的膜状结构中和核膜附近。在保持 VP1/2 蛋白序列相同的情况下,MAAP 翻译的失活和截断均会影响 AAV 衣壳蛋白的出现和细胞内分布。我们已经证明,MAAP 促进 AAV 的复制,并在控制 Ad 感染方面发挥作用。此外,我们通过对 MAAP 的 C 端进行截断,能够提高病毒产量和衣壳完整性,而其他修饰则会导致非病毒 DNA 的包装增加。我们的结果表明,MAAP 在 AAV 感染中发挥重要作用,对治疗性 AAV 载体的生产具有深远影响。