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Multiple envelope proteins are involved in white spot syndrome virus (WSSV) infection in crayfish.

机译:多个包络蛋白参与小龙虾中的白斑综合征病毒(WSSV)感染。

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White spot syndrome virus (WSSV) is a devastating viral pathogen of cultured shrimp worldwide. Previous studies have shown that the intact virion consists of at least 39 structural proteins and, among them, six were identified as envelope proteins involved in the virus infection. In this paper, the structural proteins VP36A, VP36B and VP31 (J Virol 2004; 78: 11360-11370), containing the RGD motif, were expressed in Escherichia coli and used to produce specific antibodies. Western blot confirmed that VP36A is a newly reported envelope protein. A neutralization assay with these three antibodies demonstrated that VP36A, VP36B and VP31 could significantly delay the initial infection of crayfish, but mortality still reached 100% at day 11 post-injection. However, a neutralization assay with the combination of antibodies against different envelope proteins showed that a combination of VP36B and VP31 antibodies could strongly inhibit WSSV infection in crayfish. These results revealed that multiple envelope proteins are involved in WSSV infection in crayfish and that VP36B and VP31 play a key role during this process.
机译:白斑综合征病毒(WSSV)是全世界培养虾的毁灭性病病原体。以前的研究表明,完整的病毒赛是至少39个结构蛋白质组成,其中,其中六个被鉴定为涉及病毒感染的包膜蛋白。本文在大肠杆菌中表达了含有RGD基序的结构蛋白VP36A,VP36B和VP31(J病毒2004; 78:11360-11370),用于产生特异性抗体。 Western印迹确认VP36A是新报告的包络蛋白。用这三种抗体的中和测定证明了VP36A,VP36B和VP31可以显着延迟小龙虾的初始感染,但在注射后第11天仍达到死亡率100%。然而,具有针对不同包膜蛋白的抗体组合的中和测定表明VP36B和VP31抗体的组合可以强烈抑制小龙虾中的WSSV感染。这些结果表明,多个包膜蛋白在小龙虾中涉及WSSV感染,并且VP36B和VP31在此过程中发挥关键作用。

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