Mannigel Ingrid, Stange Annett, Zentgraf Hanswalter, Lindemann Dirk
Institut für Virologie, Medizinische Fakultät Carl Gustav Carus, Technische Universität Dresden, Fetscherstrasse 74, 01307 Dresden, Germany.
J Virol. 2007 Apr;81(7):3317-26. doi: 10.1128/JVI.01866-06. Epub 2007 Jan 17.
Unlike other retrovirus Gag proteins, the prototype foamy virus (PFV) p71(g)(ag) protein is not processed into mature matrix (MA), capsid (CA), and nucleocapsid (NC) subunits. Little information about sequence motifs involved in FV capsid assembly and release is available. The recent analysis of candidate L-domain motifs in PFV Gag identified an evolutionarily conserved YXXL sequence motif with a potential function in capsid assembly. Here we provide support for the hypothesis that this motif does not function like a conventional L domain, by demonstrating that, unlike the PFV Gag PSAP L-domain motif, it cannot be functionally replaced by heterologous L-domain sequences. Furthermore, mutation of individual amino acids Y(464), I(466), L(467), and L(469), but not E(465), to alanine led to reduced particle release and production of noninfectious, aberrant capsid structures, although relative structural protein incorporation and processing were not affected. In contrast, mutation of G(468) to alanine resulted in an intermediate, temperature-sensitive phenotype characterized by reduced particle release and reduced infectivity. Despite similar relative RNA genome incorporation for all mutants, analysis and quantification of particle-associated viral nucleic acids demonstrated defects in genomic reverse transcription for all the noninfectious mutants, a process that, unlike that of orthoretroviruses, in the case of FVs takes place in the virus-producing cell. In correlation with the reduced infectivity, the G(468)A mutant displayed an intermediate level of genomic reverse transcription. Taken together, these results demonstrate that the conserved YXXLGL motif in PFV Gag is involved in correct capsid assembly, which in turn is essential for reverse transcription of the FV genome.
与其他逆转录病毒的Gag蛋白不同,原型泡沫病毒(PFV)的p71(g)(ag)蛋白不会加工成成熟的基质(MA)、衣壳(CA)和核衣壳(NC)亚基。关于泡沫病毒衣壳组装和释放所涉及的序列基序的信息很少。最近对PFV Gag中候选L结构域基序的分析确定了一个在进化上保守的YXXL序列基序,其在衣壳组装中可能具有潜在功能。在这里,我们通过证明与PFV Gag PSAP L结构域基序不同,它不能被异源L结构域序列功能替代,为该基序不像传统L结构域那样发挥作用的假设提供了支持。此外,将单个氨基酸Y(464)、I(466)、L(467)和L(469)(而非E(465))突变为丙氨酸会导致颗粒释放减少以及产生无感染性的异常衣壳结构,尽管相对结构蛋白的掺入和加工未受影响。相比之下,将G(468)突变为丙氨酸会导致一种中间的、温度敏感的表型,其特征是颗粒释放减少和感染性降低。尽管所有突变体的相对RNA基因组掺入情况相似,但对颗粒相关病毒核酸的分析和定量表明,所有无感染性突变体在基因组逆转录方面存在缺陷,在泡沫病毒的情况下,这一过程与正逆转录病毒不同,是在病毒产生细胞中发生的。与感染性降低相关,G(468)A突变体表现出基因组逆转录的中间水平。综上所述,这些结果表明PFV Gag中保守的YXXLGL基序参与了正确的衣壳组装,而这反过来对于泡沫病毒基因组的逆转录至关重要。