Abe A, Chen S T, Miyanohara A, Friedmann T
Department of Pediatrics, Center for Molecular Genetics, University of California, San Diego, La Jolla, California 92093-0634, USA.
J Virol. 1998 Aug;72(8):6356-61. doi: 10.1128/JVI.72.8.6356-6361.1998.
In the absence of envelope gene expression, retrovirus packaging cell lines expressing Moloney murine leukemia virus (MLV) gag and pol genes produce large amounts of noninfectious virus-like particles that contain reverse transcriptase, processed Gag protein, and viral RNA (gag-pol RNA particles). We demonstrate that these particles can be made infectious in an in vitro, cell-free system by the addition of a surrogate envelope protein, the G spike glycoprotein of vesicular stomatitis virus (VSV-G). The appearance of infectivity is accompanied by physical association of the G protein with the immature, noninfectious virus particles. Similarly, exposure in vitro of wild-type VSV-G to a fusion-defective pseudotyped virus containing a mutant VSV-G markedly increases the infectivity of the virus to titers similar to those of conventional VSV-G pseudotyped viruses. Furthermore, similar treatment of an amphotropic murine leukemia virus significantly allows infection of BHK cells not otherwise susceptible to infection with native amphotropic virus. The partially cell-free virus maturation system reported here should be useful for studies aimed at the preparation of tissue-targeted retrovirus vectors and will also aid in studies of nucleocapsid-envelope interactions during budding and of virus assembly and virus-receptor interactions during virus uptake into infected cells. It may also represent a potentially useful step toward the eventual development of a completely cell-free retrovirus assembly system.
在缺乏包膜基因表达的情况下,表达莫洛尼鼠白血病病毒(MLV)gag和pol基因的逆转录病毒包装细胞系会产生大量非感染性病毒样颗粒,这些颗粒含有逆转录酶、加工后的Gag蛋白和病毒RNA(gag-pol RNA颗粒)。我们证明,通过添加替代包膜蛋白——水疱性口炎病毒(VSV)的G刺突糖蛋白,这些颗粒可在体外无细胞系统中变得具有感染性。感染性的出现伴随着G蛋白与未成熟的非感染性病毒颗粒的物理结合。同样,在体外将野生型VSV-G暴露于含有突变型VSV-G的融合缺陷假型病毒中,可显著提高该病毒的感染性,使其滴度与传统VSV-G假型病毒相似。此外,对嗜异性鼠白血病病毒进行类似处理,可显著使其感染原本对天然嗜异性病毒不敏感的BHK细胞。本文报道的部分无细胞病毒成熟系统,应有助于制备组织靶向性逆转录病毒载体的研究,也将有助于研究出芽过程中核衣壳与包膜的相互作用,以及病毒摄取进入感染细胞过程中病毒组装和病毒-受体的相互作用。它也可能代表着朝着最终开发出完全无细胞逆转录病毒组装系统迈出的潜在有用的一步。