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经典猪瘟病毒 Brescia 株 E1 糖蛋白中特定半胱氨酸残基的取代影响 E1-E2 异二聚体的形成,并改变猪的毒力。

Substitution of specific cysteine residues in the E1 glycoprotein of classical swine fever virus strain Brescia affects formation of E1-E2 heterodimers and alters virulence in swine.

机构信息

Plum Island Animal Disease Center, USDA/ARS/NAA, P.O. Box 848, Greenport, NY 11944-0848, USA.

出版信息

J Virol. 2011 Jul;85(14):7264-72. doi: 10.1128/JVI.00186-11. Epub 2011 May 11.

Abstract

E1, along with E(rns) and E2, is one of the three envelope glycoproteins of classical swine fever virus (CSFV). E1 and E2 are anchored to the virus envelope at their carboxyl termini, and E(rns) loosely associates with the viral envelope. In infected cells, E2 forms homodimers and heterodimers with E1 mediated by disulfide bridges between cysteine residues. The E1 protein of CSFV strain Brescia contains six cysteine residues at positions 5, 20, 24, 94, 123, and 171. The role of these residues in the formation of E1-E2 heterodimers and their effect on CSFV viability in vitro and in vivo remain unclear. Here we observed that recombinant viruses harboring individual cysteine-to-serine substitutions within the E1 envelope protein still have formation of E1-E2 heterodimers which are functional in terms of allowing efficient virus progeny yields in infected primary swine cells. Additionally, these single cysteine mutant viruses were virulent in infected swine. However, a double mutant harboring Cys24Ser and Cys94Ser substitutions within the E1 protein altered formation of E1-E2 heterodimers in infected cells. This recombinant virus, E1ΔCys24/94v, showed delayed growth kinetics in primary swine macrophage cultures and was attenuated in swine. Furthermore, despite the observed diminished growth in vitro, infection with E1ΔCys24/94v protected swine from challenge with virulent CSFV strain Brescia at 3 and 28 days postinfection.

摘要

E1 与 E(rns)和 E2 一起,是经典猪瘟病毒 (CSFV) 的三种包膜糖蛋白之一。E1 和 E2 通过其羧基末端锚定在病毒包膜上,而 E(rns)则与病毒包膜松散结合。在受感染的细胞中,E2 通过半胱氨酸残基之间的二硫键与 E1 形成同源二聚体和异源二聚体。CSFV Brescia 株的 E1 蛋白在位置 5、20、24、94、123 和 171 处含有 6 个半胱氨酸残基。这些残基在 E1-E2 异源二聚体的形成中的作用及其对 CSFV 在体外和体内的生存能力的影响尚不清楚。在这里,我们观察到在 E1 包膜蛋白中单个半胱氨酸残基突变为丝氨酸的重组病毒仍然能够形成 E1-E2 异源二聚体,这些异源二聚体在感染原代猪细胞时能够有效地产生病毒子代。此外,这些单突变病毒在感染的猪中具有毒力。然而,在 E1 蛋白中含有 Cys24Ser 和 Cys94Ser 取代的双突变体改变了感染细胞中 E1-E2 异源二聚体的形成。这种重组病毒,E1ΔCys24/94v,在原代猪巨噬细胞培养物中表现出生长动力学延迟,并在猪中减毒。此外,尽管观察到体外生长减少,但用 E1ΔCys24/94v 感染可在感染后 3 天和 28 天保护猪免受强毒 CSFV Brescia 株的攻击。

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