CNRS UMR7212, Inserm U944, Université Paris Diderot, Institut Universitaire d'Hématologie, Paris, France.
Retrovirology. 2011 Jan 21;8(1):6. doi: 10.1186/1742-4690-8-6.
The Gag polyproteins play distinct roles during the replication cycle of retroviruses, hijacking many cellular machineries to fulfill them. In the case of the prototype foamy virus (PFV), Gag structural proteins undergo transient nuclear trafficking after their synthesis, returning back to the cytoplasm for capsid assembly and virus egress. The functional role of this nuclear stage as well as the molecular mechanism(s) responsible for Gag nuclear export are not understood.
We have identified a leptomycin B (LMB)-sensitive nuclear export sequence (NES) within the N-terminus of PFV Gag that is absolutely required for the completion of late stages of virus replication. Point mutations of conserved residues within this motif lead to nuclear redistribution of Gag, preventing subsequent virus egress. We have shown that a NES-defective PFV Gag acts as a dominant negative mutant by sequestrating its wild-type counterpart in the nucleus. Trans-complementation experiments with the heterologous NES of HIV-1 Rev allow the cytoplasmic redistribution of FV Gag, but fail to restore infectivity.
PFV Gag-Gag interactions are finely tuned in the cytoplasm to regulate their functions, capsid assembly, and virus release. In the nucleus, we have shown Gag-Gag interactions which could be involved in the nuclear export of Gag and viral RNA. We propose that nuclear export of unspliced and partially spliced PFV RNAs relies on two complementary mechanisms, which take place successively during the replication cycle.
Gag 多聚蛋白在逆转录病毒的复制周期中发挥着不同的作用,劫持了许多细胞机制来完成它们的功能。在原型泡沫病毒 (PFV) 的情况下,Gag 结构蛋白在合成后会经历短暂的核内运输,然后返回细胞质进行衣壳组装和病毒出芽。这个核阶段的功能作用以及负责 Gag 核输出的分子机制尚不清楚。
我们已经在 PFV Gag 的 N 端鉴定出一个莱普霉素 B (LMB) 敏感的核输出序列 (NES),该序列对于完成病毒复制的晚期阶段是绝对必需的。该模体中保守残基的点突变导致 Gag 的核重新分布,从而阻止随后的病毒出芽。我们已经表明,缺乏 NES 的 PFV Gag 作为显性负突变体发挥作用,将其野生型对应物隔离在核内。用 HIV-1 Rev 的异源 NES 进行的反式互补实验允许 FV Gag 的细胞质重新分布,但不能恢复感染性。
PFV Gag-Gag 相互作用在细胞质中被精细调节,以调节它们的功能、衣壳组装和病毒释放。在核内,我们已经显示出 Gag-Gag 相互作用可能参与 Gag 和病毒 RNA 的核输出。我们提出,未剪接和部分剪接的 PFV RNA 的核输出依赖于两种互补机制,它们在复制周期中相继发生。