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首页> 外文期刊>Virology Journal >Actinobacillus pleuropneumoniae induces SJPL cell cycle arrest in G2/M-phase and inhibits porcine reproductive and respiratory syndrome virus replication
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Actinobacillus pleuropneumoniae induces SJPL cell cycle arrest in G2/M-phase and inhibits porcine reproductive and respiratory syndrome virus replication

机译:胸膜肺炎放线杆菌诱导SJPL细胞周期阻滞在G2 / M期并抑制猪生殖和呼吸综合征病毒复制

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摘要

Porcine reproductive and respiratory syndrome virus (PRRSV) is one of the most important pathogens in the swine industry and causes important economic losses. No effective antiviral drugs against it are commercially available. We recently reported that the culture supernatant of Actinobacillus pleuropneumoniae, the porcine pleuropneumonia causative agent, has an antiviral activity in vitro against PRRSV in SJPL cells. Objectives of this study were (i) to identify the mechanism behind the antiviral activity displayed by A. pleuropneumoniae and (ii) to characterize the active molecules present in the bacterial culture supernatant. Antibody microarray analysis was used in order to point out cellular pathways modulated by the A. pleuropneumoniae supernatant. Subsequent, flow cytometry analysis and cell cycle inhibitors were used to confirm antibody microarray data and to link them to the antiviral activity of the A. pleuropneumoniae supernatant. Finally, A. pleuropneumoniae supernatant characterization was partially achieved using mass spectrometry. Using antibody microarray, we observed modulations in G2/M-phase cell cycle regulation pathway when SJPL cells were treated with A. pleuropneumoniae culture supernatant. These modulations were confirmed by a cell cycle arrest at the G2/M-phase when cells were treated with the A. pleuropneumoniae culture supernatant. Furthermore, two G2/M-phase cell cycle inhibitors demonstrated the ability to inhibit PRRSV infection, indicating a potential key role for PRRSV infection. Finally, mass spectrometry lead to identify two molecules (m/z 515.2 and m/z 663.6) present only in the culture supernatant. We demonstrated for the first time that A. pleuropneumoniae is able to disrupt SJPL cell cycle resulting in inhibitory activity against PRRSV. Furthermore, two putative molecules were identified from the culture supernatant. This study highlighted the cell cycle importance for PRRSV and will allow the development of new prophylactic or therapeutic approaches against PRRSV.
机译:猪繁殖与呼吸综合症病毒(PRRSV)是养猪业中最重要的病原体之一,并造成重大的经济损失。没有有效的抗病毒药物可商购。我们最近报道,猪胸膜肺炎的病原体胸膜肺炎放线杆菌的培养上清液在体外对SJPL细胞中的PRRSV具有抗病毒活性。这项研究的目的是(i)鉴定胸膜肺炎放线杆菌所表现出的抗病毒活性背后的机制,以及(ii)表征细菌培养上清液中存在的活性分子。为了说明受胸膜肺炎链球菌上清液调节的细胞途径,使用了抗体微阵列分析。随后,使用流式细胞仪分析和细胞周期抑制剂来确认抗体微阵列数据,并将其与胸膜肺炎链球菌上清液的抗病毒活性联系起来。最后,使用质谱法部分实现了胸膜肺炎放线杆菌的上清液表征。使用抗体微阵列,当我们用胸膜肺炎链球菌培养上清液处理SJPL细胞时,我们观察到了G2 / M期细胞周期调控途径的调节。当用胸膜肺炎放线杆菌培养物上清液处理细胞时,通过G2 / M期细胞周期停滞证实了这些调节。此外,两种G2 / M期细胞周期抑制剂表现出抑制PRRSV感染的能力,表明PRRSV感染的潜在关键作用。最后,质谱法鉴定出仅存在于培养上清液中的两个分子(m / z 515.2和m / z 663.6)。我们首次证明胸膜肺炎链球菌能够破坏SJPL细胞周期,从而导致针对PRRSV的抑制活性。此外,从培养上清液中鉴定出两个推定的分子。这项研究强调了细胞周期对PRRSV的重要性,并将允许开发针对PRRSV的新的预防或治疗方法。

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