首页> 美国卫生研究院文献>Journal of Virology >Ubiquitination of both Adeno-Associated Virus Type 2 and 5 Capsid Proteins Affects the Transduction Efficiency of Recombinant Vectors
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Ubiquitination of both Adeno-Associated Virus Type 2 and 5 Capsid Proteins Affects the Transduction Efficiency of Recombinant Vectors

机译:腺相关病毒2型和5型衣壳蛋白的泛素化影响重组载体的转导效率。

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摘要

In the presence of complementing adeno-associated virus type 2 (AAV-2) Rep proteins, AAV-2 genomes can be pseudotyped with the AAV-5 capsid to assemble infectious virions. Using this pseudotyping strategy, the involvement of the ubiquitin-proteasome system in AAV-5 and AAV-2 capsid-mediated infections was compared. A recombinant AAV-2 (rAAV-2) proviral luciferase construct was packaged into both AAV-2 and AAV-5 capsid particles, and transduction efficiencies in a number of cell lines were compared. Using luciferase expression as the end point, we demonstrated that coadministration of the viruses with proteasome inhibitors not only increased the transduction efficiency of rAAV-2, as previously reported, but also augmented rAAV-5-mediated gene transfer. Increased transgene expression was independent of viral genome stability, since there was no significant difference in the amounts of internalized viral DNA in the presence or absence of proteasome inhibitors. Western blot assays of immunoprecipitated viral capsid proteins from infected HeLa cell lysates and in vitro reconstitution experiments revealed evidence for ubiquitin conjugation of both AAV-2 and AAV-5 capsids. Interestingly, heat-denatured virus particles were preferential substrates for in vitro ubiquitination, suggesting that endosomal processing of the viral capsid proteins is a prelude to ubiquitination. Furthermore, ubiquitination may be a signal for processing of the capsid at the time of virion disassembly. These studies suggest that the previously reported influences of the ubiquitin-proteasome system on rAAV-2 transduction are also active for rAAV-5 and provide a clearer mechanistic framework for understanding the functional significance of ubiquitination.
机译:在存在互补的2型腺相关病毒(AAV-2)Rep蛋白的情况下,可以使用AAV-5衣壳对AAV-2基因组进行假型化以组装感染性病毒粒子。使用这种假型化策略,比较了泛素-蛋白酶体系统在AAV-5和AAV-2衣壳介导的感染中的参与。将重组AAV-2(rAAV-2)前病毒荧光素酶构建体包装到AAV-2和AAV-5衣壳颗粒中,并比较了许多细胞系的转导效率。使用荧光素酶表达作为终点,我们证明病毒与蛋白酶体抑制剂的共同给药不仅增加了rAAV-2的转导效率(如先前报道的那样),而且还增强了rAAV-5介导的基因转移。转基因表达的增加与病毒基因组稳定性无关,因为在存在或不存在蛋白酶体抑制剂的情况下,内在化病毒DNA的量没有显着差异。来自受感染的HeLa细胞裂解物的免疫沉淀病毒衣壳蛋白的Western印迹分析和体外重组实验揭示了AAV-2和AAV-5衣壳均具有泛素结合的证据。有趣的是,热变性病毒颗粒是体外泛素化的优先底物,这表明病毒衣壳蛋白的内体加工是泛素化的前奏。此外,泛素化可以是在病毒体拆卸时用于处理衣壳的信号。这些研究表明,先前报道的泛素-蛋白酶体系统对rAAV-2转导的影响对于rAAV-5也是活跃的,并且为了解泛素化的功能意义提供了更清晰的机制框架。

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