首页> 美国卫生研究院文献>Journal of Virology >Virion-Associated Complement Regulator CD55 Is More Potent than CD46 in Mediating Resistance of Mumps Virus and Vesicular Stomatitis Virus to Neutralization
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Virion-Associated Complement Regulator CD55 Is More Potent than CD46 in Mediating Resistance of Mumps Virus and Vesicular Stomatitis Virus to Neutralization

机译:在介导腮腺炎病毒和水泡性口腔炎病毒对中和的抗性中与病毒体相关的补体调节剂CD55比CD46更有力。

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摘要

Enveloped viruses can incorporate host cell membrane proteins during the budding process. Here we demonstrate that mumps virus (MuV) and vesicular stomatitis virus (VSV) assemble to include CD46 and CD55, two host cell regulators which inhibit propagation of complement pathways through distinct mechanisms. Using viruses which incorporated CD46 alone, CD55 alone, or both CD46 and CD55, we have tested the relative contribution of these regulators in resistance to complement-mediated neutralization. Virion-associated CD46 and CD55 were biologically active, with VSV showing higher levels of activity of both cofactors, which promoted factor I-mediated cleavage of C3b into iC3b as well as decay-accelerating factor (DAF) activity against the C3 convertase, than MuV. Time courses of in vitro neutralization with normal human serum (NHS) showed that both regulators could delay neutralization, but viruses containing CD46 alone were neutralized faster and more completely than viruses containing CD55 alone. A dominant inhibitory role for CD55 was most evident for VSV, where virus containing CD55 alone was not substantially different in neutralization kinetics from virus harboring both regulators. Electron microscopy showed that VSV neutralization proceeded through virion aggregation followed by lysis, with virion-associated CD55 providing a delay in both aggregation and lysis more substantial than that conferred by CD46. Our results demonstrate the functional significance of incorporation of host cell factors during virion envelope assembly. They also define pathways of virus complement-mediated neutralization and suggest the design of more effective viral vectors.
机译:包膜病毒可以在出芽过程中掺入宿主细胞膜蛋白。在这里,我们证明腮腺炎病毒(MuV)和水疱性口炎病毒(VSV)组装在一起,包括CD46和CD55,这两种宿主细胞调节剂通过不同的机制抑制补体途径的传播。使用单独掺入CD46,单独掺入CD55或同时掺入CD46和CD55的病毒,我们测试了这些调节剂在补体介导的中和抗性中的相对作用。与病毒粒子相关的CD46和CD55具有生物学活性,VSV显示两种辅因子的活性水平都较高,与MuV相比,VSV促进了因子I介导的C3b裂解为iC3b以及抗C3转化酶的衰变加速因子(DAF)活性。 。用正常人血清(NHS)进行体外中和的时间过程表明,两种调节剂均可延迟中和,但仅含CD46的病毒比仅含CD55的病毒被更快,更完全地中和。 CD55的主要抑制作用在VSV中最为明显,其中仅含CD55的病毒在中和动力学方面与带有两个调节剂的病毒没有显着差异。电子显微镜显示VSV中和通过病毒体聚集随后裂解进行,与病毒体相关的CD55提供了比CD46所赋予的更大的聚集和裂解延迟。我们的结果证明了在病毒体包膜组装过程中掺入宿主细胞因子的功能意义。他们还定义了病毒补体介导的中和途径,并提出了更有效的病毒载体设计。

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