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Identification of nucleolin as a cellular receptor for human respiratory syncytial virus.

机译:核仁鉴定核仁作为人呼吸合胞病毒的细胞受体。

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Human respiratory syncytial virus (RSV) causes a large burden of disease worldwide. There is no effective vaccine or therapy, and the use of passive immunoprophylaxis with RSV-specific antibodies is limited to high-risk patients. The cellular receptor (or receptors) required for viral entry and replication has yet to be described; its identification will improve understanding of the pathogenesis of infection and provide a target for the development of novel antiviral interventions. Here we show that RSV interacts with host-cell nucleolin via the viral fusion envelope glycoprotein and binds specifically to nucleolin at the apical cell surface in vitro. We observed decreased RSV infection in vitro in neutralization experiments using nucleolin-specific antibodies before viral inoculation, in competition experiments in which virus was incubated with soluble nucleolin before inoculation of cells, and upon RNA interference (RNAi) to silence cellular nucleolin expression. Transfection of nonpermissive Spodoptera frugiperda Sf9 insect cells with human nucleolin conferred susceptibility to RSV infection. RNAi-mediated knockdown of lung nucleolin was associated with a significant reduction in RSV infection in mice (P = 0.0004), confirming that nucleolin is a functional RSV receptor in vivo.
机译:人类呼吸道性病毒(RSV)在全球造成巨大的疾病负担。没有有效的疫苗或治疗,并且使用具有RSV特异性抗体的被动免疫营养素仅限于高危患者。病毒进入和复制所需的细胞受体(或受体)尚未描述;其鉴定将改善对感染发病机制的理解,并为开发新的抗病毒干预措施提供目标。在这里,我们表明RSV通过病毒融合包络糖蛋白与宿主细胞核蛋白相互作用,并在体外特异性地结合到顶端细胞表面的核仁。我们观察到使用病毒接种前的核仁特异性抗体在中和实验中体外减少了RSV感染,在竞争实验中,在接种细胞之前将病毒与可溶性核仁孵育,并在RNA干扰(RNAi)上沉默细胞核核苷酸表达。用人体核苷酸转染非智能烟草蛋白酶咖啡蛋白酶SF9昆虫细胞对RSV感染的敏感性。 RNAi介导的肺核仁敲低与小鼠RSV感染的显着降低有关(P = 0.0004),证实核仁是体内的功能性RSV受体。

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