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Functional Replacement and Positional Dependence of Homologous and Heterologous L Domains in Equine Infectious Anemia Virus Replication

机译:马感染性贫血病毒复制中同源和异源L结构域的功能替换和位置依赖性

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摘要

We have previously demonstrated by Gag polyprotein budding assays that the Gag p9 protein of equine infectious anemia virus (EIAV) utilizes a unique YPDL motif as a late assembly domain (L domain) to facilitate release of the budding virus particle from the host cell plasma membrane (B. A. Puffer, L. J. Parent, J. W. Wills, and R. C. Montelaro, J. Virol. 71:6541-6546, 1997). To characterize in more detail the role of the YPDL L domain in the EIAV life cycle, we have examined the replication properties of a series of EIAV proviral mutants in which the parental YPDL L domain was replaced by a human immunodeficiency virus type 1 (HIV-1) PTAP or Rous sarcoma virus (RSV) PPPY L domain in the p9 protein or by proviruses in which the parental YPDL or HIV-1 PTAP L domain was inserted in the viral matrix protein. The replication properties of these L-domain variants were examined with respect to Gag protein expression and processing, virus particle production, and virus infectivity. The data from these experiments indicate that (i) the YPDL L domain of p9 is required for replication competence (assembly and infectivity) in equine cell cultures, including the natural target equine macrophages; (ii) all of the functions of the YPDL L domain in the EIAV life cycle can be replaced by replacement of the parental YPDL sequence in p9 with the PTAP L-domain segment of HIV-1 p6 or the PPPY L domain of RSV p2b; and (iii) the assembly, but not infectivity, functions of the EIAV proviral YPDL substitution mutants can be partially rescued by inclusions of YPDL and PTAP L-domain sequences in the C-terminal region of the EIAV MA protein. Taken together, these data demonstrate that the EIAV YPDL L domain mediates distinct functions in viral budding and infectivity and that the HIV-1 PTAP and RSV PPPY L domains can effectively facilitate these dual replication functions in the context of the p9 protein. In light of the fact that YPDL, PTAP, and PPPY domains evidently have distinct characteristic binding specificities, these observations may indicate different portals into common cellular processes that mediate EIAV budding and infectivity, respectively.
机译:先前我们通过Gag多蛋白芽接测定法证明,马传染性贫血病毒(EIAV)的Gag p9蛋白利用独特的YPDL基序作为后期装配结构域(L结构域),以促进芽接病毒颗粒从宿主细胞质膜释放(BA Puffer,LJ Parent,JW Wills,和RC Montelaro,J.Virol.71:6541-6546,1997)。为了更详细地描述YPDL L结构域在EIAV生命周期中的作用,我们检查了一系列EIAV前病毒突变体的复制特性,其中父母YPDL L结构域被1型人类免疫缺陷病毒(HIV- 1)p9蛋白中的PTAP或劳斯肉瘤病毒(RSV)PPPY L结构域,或通过亲病毒YPDL或HIV-1 PTAP L结构域插入病毒基质蛋白中的原病毒。检查了这些L结构域变体的复制特性,涉及Gag蛋白的表达和加工,病毒颗粒的产生以及病毒的感染性。这些实验的数据表明:(i)马细胞培养物中,包括天然目标马巨噬细胞,复制能力(装配和感染力)需要p9的YPDL L结构域; (ii)可通过用HIV-1 p6的PTAP L结构域片段或RSV p2b的PPPY L结构域替换p9中的亲本YPDL序列来代替EIAV生命周期中YPDL L结构域的所有功能; (iii)EIAV前病毒YPDL替代突变体的装配功能而非感染性可以通过在EIAV MA蛋白C端区域包含YPDL和PTAP L结构域序列来部分挽救。综上所述,这些数据表明,EIAV YPDL L结构域在病毒出芽和感染性方面介导了不同的功能,而HIV-1 PTAP和RSV PPPY L结构域可以在p9蛋白的背景下有效地促进这些双重复制功能。考虑到YPDL,PTAP和PPPY结构域显然具有不同的特征结合特异性,这些观察结果可能表明介导EIAV萌芽和感染性的常见细胞过程分别存在不同的门户。

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