Effantin Grégory, Estrozi Leandro F, Aschman Nick, Renesto Patricia, Stanke Nicole, Lindemann Dirk, Schoehn Guy, Weissenhorn Winfried
Institut de Biologie Structurale (IBS), Univ. Grenoble Alpes, CEA, CNRS, Grenoble, France.
UVHCI, Univ. Grenoble Alpes, CNRS, EMBL, Grenoble, France.
PLoS Pathog. 2016 Jul 11;12(7):e1005721. doi: 10.1371/journal.ppat.1005721. eCollection 2016 Jul.
Foamy viruses (FV) belong to the genus Spumavirus, which forms a distinct lineage in the Retroviridae family. Although the infection in natural hosts and zoonotic transmission to humans is asymptomatic, FVs can replicate well in human cells making it an attractive gene therapy vector candidate. Here we present cryo-electron microscopy and (cryo-)electron tomography ultrastructural data on purified prototype FV (PFV) and PFV infected cells. Mature PFV particles have a distinct morphology with a capsid of constant dimension as well as a less ordered shell of density between the capsid and the membrane likely formed by the Gag N-terminal domain and the cytoplasmic part of the Env leader peptide gp18LP. The viral membrane contains trimeric Env glycoproteins partly arranged in interlocked hexagonal assemblies. In situ 3D reconstruction by subtomogram averaging of wild type Env and of a Env gp48TM- gp80SU cleavage site mutant showed a similar spike architecture as well as stabilization of the hexagonal lattice by clear connections between lower densities of neighboring trimers. Cryo-EM was employed to obtain a 9 Å resolution map of the glycoprotein in its pre-fusion state, which revealed extensive trimer interactions by the receptor binding subunit gp80SU at the top of the spike and three central helices derived from the fusion protein subunit gp48TM. The lower part of Env, presumably composed of interlaced parts of gp48TM, gp80SU and gp18LP anchors the spike at the membrane. We propose that the gp48TM density continues into three central transmembrane helices, which interact with three outer transmembrane helices derived from gp18LP. Our ultrastructural data and 9 Å resolution glycoprotein structure provide important new insights into the molecular architecture of PFV and its distinct evolutionary relationship with other members of the Retroviridae.
泡沫病毒(FV)属于泡沫病毒属,在逆转录病毒科中形成一个独特的谱系。尽管在自然宿主中的感染以及向人类的人畜共患病传播是无症状的,但FV能在人类细胞中良好复制,使其成为有吸引力的基因治疗载体候选者。在此,我们展示了关于纯化的原型FV(PFV)和PFV感染细胞的冷冻电子显微镜和(冷冻)电子断层扫描超微结构数据。成熟的PFV颗粒具有独特的形态,其衣壳尺寸恒定,并且在衣壳和膜之间有一个不太规则的密度壳层,可能由Gag N端结构域和Env前导肽gp18LP的细胞质部分形成。病毒膜包含三聚体Env糖蛋白,部分排列成交锁的六边形聚集体。通过对野生型Env和Env gp48TM - gp80SU裂解位点突变体进行亚断层平均的原位三维重建显示,其刺突结构相似,并且通过相邻三聚体较低密度之间的清晰连接使六边形晶格得以稳定。利用冷冻电镜获得了糖蛋白预融合状态下9 Å分辨率的图谱,该图谱揭示了刺突顶部受体结合亚基gp80SU的广泛三聚体相互作用以及来自融合蛋白亚基gp48TM的三个中央螺旋。Env的下部可能由gp48TM、gp80SU和gp18LP的交错部分组成,将刺突锚定在膜上。我们提出,gp48TM密度延伸至三个中央跨膜螺旋,它们与源自gp18LP的三个外部跨膜螺旋相互作用。我们的超微结构数据和9 Å分辨率的糖蛋白结构为PFV的分子结构及其与逆转录病毒科其他成员独特的进化关系提供了重要的新见解。