Gabus Caroline, Ivanyi-Nagy Roland, Depollier Julien, Bucheton Alain, Pelisson Alain, Darlix Jean-Luc
LaboRetro, Unité de Virologie Humaine INSERM, IFR 128, Ecole Normale Supérieure de Lyon, 46 Allée d'Italie, 69364 LYON Cedex 07, France.
Nucleic Acids Res. 2006;34(20):5764-77. doi: 10.1093/nar/gkl722. Epub 2006 Oct 13.
Mobile LTR-retroelements comprising retroviruses and LTR-retrotransposons form a large part of eukaryotic genomes. Their mode of replication and abundance favour the notion that they are major actors in eukaryote evolution. The Gypsy retroelement can spread in the germ line of the fruit fly Drosophila melanogaster via both env-independent and env-dependent processes. Thus, Gypsy is both an active retrotransposon and an infectious retrovirus resembling the gammaretrovirus MuLV. However, unlike gammaretroviruses, the Gypsy Gag structural precursor is not processed into Matrix, Capsid and Nucleocapsid (NC) proteins. In contrast, it has features in common with Gag of the ancient yeast TY1 retroelement. These characteristics of Gypsy make it a very interesting model to study replication of a retroelement at the frontier between ancient retrotransposons and retroviruses. We investigated Gypsy replication using an in vitro model system and transfection of insect cells. Results show that an unstructured domain of Gypsy Gag has all the properties of a retroviral NC. This NC-like peptide forms ribonucleoparticle-like complexes upon binding Gypsy RNA and directs the annealing of primer tRNA(Lys,2) to two distinct primer binding sites (PBS) at the genome 5' and 3' ends. Only the 5' PBS is indispensable for cDNA synthesis in vitro and in Drosophila cells.
包含逆转录病毒和长末端重复序列逆转座子的移动长末端重复序列元件构成了真核生物基因组的很大一部分。它们的复制方式和丰度支持了这样一种观点,即它们是真核生物进化中的主要参与者。吉普赛逆转座子元件可以通过不依赖env和依赖env的过程在果蝇黑腹果蝇的生殖系中传播。因此,吉普赛既是一种活跃的逆转座子,也是一种类似于γ逆转录病毒MuLV的传染性逆转录病毒。然而,与γ逆转录病毒不同的是,吉普赛Gag结构前体不会加工成基质蛋白、衣壳蛋白和核衣壳(NC)蛋白。相反,它具有与古老酵母TY1逆转座子的Gag共同的特征。吉普赛的这些特性使其成为研究古老逆转座子和逆转录病毒之间前沿的逆转座子元件复制的一个非常有趣的模型。我们使用体外模型系统和昆虫细胞转染研究了吉普赛的复制。结果表明,吉普赛Gag的一个无结构域具有逆转录病毒NC的所有特性。这种类似NC的肽在结合吉普赛RNA时形成核糖核蛋白样复合物,并指导引物tRNA(Lys,2)与基因组5'和3'末端的两个不同引物结合位点(PBS)退火。只有5' PBS对于体外和果蝇细胞中的cDNA合成是必不可少的。