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Functional Roles of Equine Infectious Anemia Virus Gag p9 in Viral Budding and Infection

机译:马传染性贫血病毒Gag p9在病毒萌发和感染中的功能作用

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摘要

Previous studies utilizing Gag polyprotein budding assays with transfected cells reveal that the equine infectious anemia virus (EIAV) Gag p9 protein provides a late assembly function mediated by a critical Y23P24D25L26 motif (L-domain) to release viral particles from the plasma membrane. To elucidate further the role of EIAV p9 in virus assembly and replication, we have examined the replication properties of a defined series of p9 truncation and site-directed mutations in the context of a reference infectious molecular proviral clone, EIAVuk. Characterization of these p9 proviral mutants revealed new functional properties of p9 in EIAV replication, not previously elucidated by Gag polyprotein budding assays. The results of these studies demonstrated that only the N-terminal 31 amino acids of a total of 51 residues in the complete p9 protein were required to maintain replication competence in transfected equine cells; proviral mutants with p9 C-terminal truncations of 20 or fewer amino acids remained replication competent, while mutants with truncations of 21 or more residues were completely replication defective. The inability of the defective p9 proviral mutations to produce infectious virus could not be attributed to defects in Gag polyprotein expression or processing, in virion RT activity, or in virus budding. While proviral replication competence appeared to be associated with the presence of a K30K31 motif and potential ubiquitination of the EIAV p9 protein, mutations of these lysine residues to methionines produced variant proviruses that replicated as well as the parental EIAVuk in transfected ED cells. Thus, these observations reveal for the first time that EIAV p9 is not absolutely required for virus budding in the context of proviral gene expression, suggesting that other EIAV proteins can at least in part mediate late budding functions previously associated with the p9 protein. In addition, the data define a function for EIAV p9 in the infectivity of virus particles, indicating a previously unrecognized role for this Gag protein in EIAV replication.
机译:先前利用Gag多蛋白芽接测定和转染细胞的研究表明,马传染性贫血病毒(EIAV)Gag p9蛋白提供了关键的Y23P24D25L26基序(L结构域)介导的后期组装功能,可从质膜释放病毒颗粒。为了进一步阐明EIAV p9在病毒装配和复制中的作用,我们在参考感染性分子原病毒克隆EIAVuk的背景下检查了一系列定义的p9截短和定点突变的复制特性。这些p9前病毒突变体的表征揭示了EIAV复制中p9的新功能特性,而先前尚未通过Gag多蛋白芽接测定法阐明。这些研究的结果表明,完整的p9蛋白中总共51个残基的N末端31个氨基酸才需要维持转染马细胞中的复制能力。具有20个或更少氨基酸的p9 C端截短的原病毒突变体仍然具有复制能力,而具有21个或更多残基的截断突变体则完全复制缺陷。有缺陷的p9前病毒突变不能产生传染性病毒,不能归因于Gag多蛋白表达或加工,病毒体RT活性或病毒萌芽方面的缺陷。虽然前病毒复制能力似乎与K30K31基序的存在和EIAV p9蛋白的潜在泛素化有关,但这些赖氨酸残基向蛋氨酸的突变产生了变种的原病毒,该原病毒在转染的ED细胞中也与亲本EIAVuk一样复制。因此,这些观察结果首次揭示了在前病毒基因表达的背景下,EIAV p9并非绝对需要病毒出芽,这表明其他EIAV蛋白至少可以部分介导先前与p9蛋白相关的后期出芽功能。另外,该数据定义了EIAV p9在病毒颗粒的感染性中的功能,表明该Gag蛋白在EIAV复制中的作用以前未被认识。

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