Suppr超能文献

腮腺炎感染细胞对替代补体途径的激活:与病毒神经氨酸酶活性的关系。

Activation of the alternative complement pathway by mumps infected cells: relationship to viral neuraminidase activity.

作者信息

Hirsch R L, Wolinsky J S, Winkelstein J A

出版信息

Arch Virol. 1986;87(3-4):181-90. doi: 10.1007/BF01315298.

Abstract

An inverse relationship exists between the sialic acid content of a particle and its ability to activate the alternative complement pathway. The present studies were performed to determine if the neuraminidase (NANase) activities of different mumps virus strains could influence the ability of mumps virus infected cells to activate the alternative pathway. CV-1 cells were infected with three different mumps virus strains (RW, O'Take, and Kilham) and after 24 hours, 10 percent guinea pig serum (GPS) treated with EGTA/MgCl2 or GPS lacking the 4th component of complement (C4DGPS) was added to the cell monolayers. After 30 minutes, the percentage C3 consumed was determined by a functional hemolytic assay. Cells infected with RW (high NANase) consumed significantly more C3 (23.2 per cent) than cells infected with Kilham (5.7 percent, low NANase). Cells infected with O'Take were intermediate in their ability to activate C3. The degree of C3 deposition on the surface of infected cells, detected by fluorescence microscopy, was also greater for cells infected with the RW than the Kilham strain of mumps virus. These studies suggest that the NANase activity of mumps virus can influence the ability of infected cells to activate the alternative pathway and thereby, the ability of complement to participate in host defense against mumps virus infection.

摘要

颗粒的唾液酸含量与其激活替代补体途径的能力之间存在反比关系。进行本研究以确定不同腮腺炎病毒株的神经氨酸酶(NANase)活性是否会影响腮腺炎病毒感染细胞激活替代途径的能力。用三种不同的腮腺炎病毒株(RW、大竹和基尔汉姆)感染CV-1细胞,24小时后,将用EGTA/MgCl2处理的10%豚鼠血清(GPS)或缺乏补体第四成分(C4DGPS)的GPS添加到细胞单层中。30分钟后,通过功能性溶血试验测定消耗的C3百分比。感染RW(高NANase)的细胞消耗的C3(23.2%)明显多于感染基尔汉姆(5.7%,低NANase)的细胞。感染大竹的细胞激活C3的能力处于中等水平。通过荧光显微镜检测,感染RW的细胞比感染基尔汉姆株腮腺炎病毒的细胞在感染细胞表面的C3沉积程度也更高。这些研究表明,腮腺炎病毒的NANase活性可以影响感染细胞激活替代途径的能力,从而影响补体参与宿主抵御腮腺炎病毒感染的能力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验