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高尔基蛋白 ACBD3 是脊髓灰质炎病毒蛋白 3A 的相互作用蛋白,可调节脊髓灰质炎病毒复制。

The Golgi protein ACBD3, an interactor for poliovirus protein 3A, modulates poliovirus replication.

机构信息

Institut Pasteur, Unité de Biologie des Virus Entériques, Paris, France.

出版信息

J Virol. 2013 Oct;87(20):11031-46. doi: 10.1128/JVI.00304-13. Epub 2013 Aug 7.

Abstract

We have shown that the circulating vaccine-derived polioviruses responsible for poliomyelitis outbreaks in Madagascar have recombinant genomes composed of sequences encoding capsid proteins derived from poliovaccine Sabin, mostly type 2 (PVS2), and sequences encoding nonstructural proteins derived from other human enteroviruses. Interestingly, almost all of these recombinant genomes encode a nonstructural 3A protein related to that of field coxsackievirus A17 (CV-A17) strains. Here, we investigated the repercussions of this exchange, by assessing the role of the 3A proteins of PVS2 and CV-A17 and their putative cellular partners in viral replication. We found that the Golgi protein acyl-coenzyme A binding domain-containing 3 (ACBD3), recently identified as an interactor for the 3A proteins of several picornaviruses, interacts with the 3A proteins of PVS2 and CV-A17 at viral RNA replication sites, in human neuroblastoma cells infected with either PVS2 or a PVS2 recombinant encoding a 3A protein from CV-A17 [PVS2-3A(CV-A17)]. The small interfering RNA-mediated downregulation of ACBD3 significantly increased the growth of both viruses, suggesting that ACBD3 slowed viral replication. This was confirmed with replicons. Furthermore, PVS2-3A(CV-A17) was more resistant to the replication-inhibiting effect of ACBD3 than the PVS2 strain, and the amino acid in position 12 of 3A was involved in modulating the sensitivity of viral replication to ACBD3. Overall, our results indicate that exchanges of nonstructural proteins can modify the relationships between enterovirus recombinants and cellular interactors and may thus be one of the factors favoring their emergence.

摘要

我们已经表明,导致马达加斯加脊髓灰质炎暴发的循环疫苗衍生脊髓灰质炎病毒具有重组基因组,由源自脊髓灰质炎疫苗沙宾的编码外壳蛋白的序列和源自其他人类肠道病毒的编码非结构蛋白的序列组成。有趣的是,几乎所有这些重组基因组都编码与野毒株柯萨奇病毒 A17(CV-A17)株相关的非结构 3A 蛋白。在这里,我们通过评估 PVS2 和 CV-A17 的 3A 蛋白及其潜在的细胞伴侣在病毒复制中的作用,研究了这种交换的影响。我们发现,最近被鉴定为几种小核糖核酸病毒 3A 蛋白相互作用蛋白的高尔基蛋白酰基辅酶 A 结合域 3(ACBD3),与人神经母细胞瘤细胞中 PVS2 或编码 CV-A17 3A 蛋白的 PVS2 重组体感染时,在病毒 RNA 复制部位与 PVS2 和 CV-A17 的 3A 蛋白相互作用。ACBD3 的小干扰 RNA 下调显著增加了两种病毒的生长,表明 ACBD3 减缓了病毒复制。这在用复制子得到了证实。此外,与 PVS2 株相比,PVS2-3A(CV-A17)对 ACBD3 的复制抑制作用更具抗性,并且 3A 位置 12 的氨基酸参与调节病毒复制对 ACBD3 的敏感性。总体而言,我们的结果表明,非结构蛋白的交换可以改变肠道病毒重组体与细胞相互作用物之间的关系,因此可能是促进其出现的因素之一。

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