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一种具有正逆转录病毒基质和衣壳功能特性的独特泡沫病毒 Gag N 端结构域。

A unique spumavirus Gag N-terminal domain with functional properties of orthoretroviral matrix and capsid.

机构信息

Division of Molecular Structure, MRC National Institute for Medical Research, the Ridgeway, Mill Hill, London, United Kingdom.

出版信息

PLoS Pathog. 2013 May;9(5):e1003376. doi: 10.1371/journal.ppat.1003376. Epub 2013 May 9.

Abstract

The Spumaretrovirinae, or foamyviruses (FVs) are complex retroviruses that infect many species of monkey and ape. Although FV infection is apparently benign, trans-species zoonosis is commonplace and has resulted in the isolation of the Prototypic Foamy Virus (PFV) from human sources and the potential for germ-line transmission. Despite little sequence homology, FV and orthoretroviral Gag proteins perform equivalent functions, including genome packaging, virion assembly, trafficking and membrane targeting. In addition, PFV Gag interacts with the FV Envelope (Env) protein to facilitate budding of infectious particles. Presently, there is a paucity of structural information with regards FVs and it is unclear how disparate FV and orthoretroviral Gag molecules share the same function. Therefore, in order to probe the functional overlap of FV and orthoretroviral Gag and learn more about FV egress and replication we have undertaken a structural, biophysical and virological study of PFV-Gag. We present the crystal structure of a dimeric amino terminal domain from PFV, Gag-NtD, both free and in complex with the leader peptide of PFV Env. The structure comprises a head domain together with a coiled coil that forms the dimer interface and despite the shared function it is entirely unrelated to either the capsid or matrix of Gag from other retroviruses. Furthermore, we present structural, biochemical and virological data that reveal the molecular details of the essential Gag-Env interaction and in addition we also examine the specificity of Trim5α restriction of PFV. These data provide the first information with regards to FV structural proteins and suggest a model for convergent evolution of gag genes where structurally unrelated molecules have become functionally equivalent.

摘要

泡沫逆转录病毒科(或泡沫病毒)是一种复杂的逆转录病毒,可感染许多种猴子和猿。虽然泡沫病毒感染显然是良性的,但跨物种人畜共患病很常见,导致从人类来源中分离出原型泡沫病毒(PFV),以及潜在的种系传播。尽管序列同源性很小,但泡沫病毒和正逆转录病毒的 Gag 蛋白执行等效的功能,包括基因组包装、病毒体组装、运输和膜靶向。此外,PFV Gag 与泡沫病毒 Env 蛋白相互作用,以促进感染性颗粒的出芽。目前,关于泡沫病毒的结构信息很少,不清楚不同的泡沫病毒和正逆转录病毒 Gag 分子如何共享相同的功能。因此,为了探究泡沫病毒和正逆转录病毒 Gag 的功能重叠,并更多地了解泡沫病毒的出芽和复制,我们对 PFV-Gag 进行了结构、生物物理和病毒学研究。我们展示了来自 PFV 的二聚体氨基末端结构域 Gag-NtD 的晶体结构,包括游离态和与 PFV Env 先导肽结合态的结构。该结构包含一个头部结构域和一个形成二聚体界面的卷曲螺旋,尽管具有共同的功能,但它与其他逆转录病毒的 Gag 衣壳或基质完全没有关系。此外,我们还提供了结构、生化和病毒学数据,揭示了 Gag-Env 相互作用的分子细节,此外,我们还检查了 Trim5α 对 PFV 的限制的特异性。这些数据提供了关于泡沫病毒结构蛋白的第一个信息,并提出了 gag 基因趋同进化的模型,其中结构上不相关的分子已成为功能等效的分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b1c/3649970/a66d5384c0a5/ppat.1003376.g001.jpg

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