Craven R C, Harty R N, Paragas J, Palese P, Wills J W
Department of Microbiology and Immunology, The Pennsylvania State University College of Medicine, Hershey, Pennsylvania 17033, USA.
J Virol. 1999 Apr;73(4):3359-65. doi: 10.1128/JVI.73.4.3359-3365.1999.
Little is known about the mechanisms used by enveloped viruses to separate themselves from the cell surface at the final step of budding. However, small sequences in the Gag proteins of several retroviruses (L domains) have been implicated in this process. A sequence has been identified in the M proteins of rhabdoviruses that closely resembles the PPPPY motif in the L domain of Rous sarcoma virus (RSV), an avian retrovirus. To evaluate whether the PPPY sequence in vesicular stomatitis virus (VSV) M protein has an activity analogous to that of the retroviral sequence, M-Gag chimeras were characterized. The N-terminal 74 amino acids of the VSV (Indiana) M protein, including the PPPY motif, was able to replace the L domain of RSV Gag and allow the assembly and release of virus-like particles. Alanine substitutions in the VSV PPPY motif severely compromised the budding activity of this hybrid protein but not that of another chimera which also contained the RSV PPPPY sequence. We conclude that this VSV sequence is functionally homologous to the RSV L domain in promoting virus particle release, making this the first example of such an activity in a virus other than a retrovirus. Both the RSV and VSV motifs have been shown to interact in vitro with certain cellular proteins that contain a WW interaction module, suggesting that the L domains are sites of interaction with unknown host machinery involved in virus release.
关于包膜病毒在出芽的最后一步从细胞表面分离自身所使用的机制,人们了解甚少。然而,几种逆转录病毒的Gag蛋白中的小序列(L结构域)已被认为参与了这一过程。在弹状病毒的M蛋白中鉴定出了一个序列,它与禽逆转录病毒劳斯肉瘤病毒(RSV)的L结构域中的PPPPY基序非常相似。为了评估水泡性口炎病毒(VSV)M蛋白中的PPPY序列是否具有与逆转录病毒序列类似的活性,对M-Gag嵌合体进行了表征。VSV(印第安纳株)M蛋白的N端74个氨基酸,包括PPPY基序,能够取代RSV Gag的L结构域,并允许病毒样颗粒的组装和释放。VSV PPPY基序中的丙氨酸取代严重损害了这种杂合蛋白的出芽活性,但对另一种也含有RSV PPPPY序列的嵌合体则没有影响。我们得出结论,在促进病毒颗粒释放方面,这种VSV序列在功能上与RSV L结构域同源,这使其成为除逆转录病毒外的病毒中此类活性的首个例子。RSV和VSV基序均已被证明在体外与某些含有WW相互作用模块的细胞蛋白相互作用,这表明L结构域是与参与病毒释放的未知宿主机制相互作用的位点。