Institut für Virologie, Medizinische Fakultät Carl Gustav Carus, Technische Universität Dresden, Fetscherstr 74, 01307 Dresden, Germany.
J Virol. 2011 Feb;85(4):1452-63. doi: 10.1128/JVI.01731-10. Epub 2010 Nov 24.
Prototype foamy virus (PFV) Gag lacks the characteristic orthoretroviral Cys-His motifs that are essential for various steps of the orthoretroviral replication cycle, such as RNA packaging, reverse transcription, infectivity, integration, and viral assembly. Instead, it contains three glycine-arginine-rich boxes (GR boxes) in its C terminus that putatively represent a functional equivalent. We used a four-plasmid replication-deficient PFV vector system, with uncoupled RNA genome packaging and structural protein translation, to analyze the effects of deletion and various substitution mutations within each GR box on particle release, particle-associated protein composition, RNA packaging, DNA content, infectivity, particle morphology, and intracellular localization. The degree of viral particle release by all mutants was similar to that of the wild type. Only minimal effects on Pol encapsidation, exogenous reverse transcriptase (RT) activity, and genomic viral RNA packaging were observed. In contrast, particle-associated DNA content and infectivity were drastically reduced for all deletion mutants and were undetectable for all alanine substitution mutants. Furthermore, GR box I mutants had significant changes in particle morphology, and GR box II mutants lacked the typical nuclear localization pattern of PFV Gag. Finally, it could be shown that GR boxes I and III, but not GR box II, can functionally complement each other. It therefore appears that, similar to the orthoretroviral Cys-His motifs, the PFV Gag GR boxes are important for RNA encapsidation, genome reverse transcription, and virion infectivity as well as for particle morphogenesis.
原型泡沫病毒 (PFV) Gag 缺乏特征性的正逆转录病毒 Cys-His 基序,这些基序对于正逆转录病毒复制周期的各个步骤(如 RNA 包装、逆转录、感染性、整合和病毒组装)都是必不可少的。相反,它在 C 末端包含三个甘氨酸-精氨酸丰富的盒(GR 盒),推测具有功能等效性。我们使用了一种四质粒复制缺陷型 PFV 载体系统,具有不偶联的 RNA 基因组包装和结构蛋白翻译,来分析每个 GR 盒内的缺失和各种取代突变对粒子释放、粒子相关蛋白组成、RNA 包装、DNA 含量、感染性、粒子形态和细胞内定位的影响。所有突变体的病毒粒子释放程度与野生型相似。仅观察到对 Pol 包裹、外源性逆转录酶 (RT) 活性和基因组病毒 RNA 包装的最小影响。相比之下,所有缺失突变体的粒子相关 DNA 含量和感染性都大大降低,所有丙氨酸取代突变体都无法检测到。此外,GR 盒 I 突变体的粒子形态发生了显著变化,GR 盒 II 突变体缺乏 PFV Gag 的典型核定位模式。最后,可以证明 GR 盒 I 和 III,但不是 GR 盒 II,可以相互功能互补。因此,与正逆转录病毒 Cys-His 基序类似,PFV Gag GR 盒对于 RNA 包裹、基因组逆转录和病毒粒子感染性以及粒子形态发生都很重要。