Miller Matthew S, Hertel Laura
Department of Microbiology and Immunology, Health Sciences Addition HSA 320, The University of Western Ontario, London, Ontario, Canada.
J Virol. 2009 Jul;83(14):7015-28. doi: 10.1128/JVI.00398-09. Epub 2009 Apr 29.
Like all viruses, herpesviruses extensively interact with the host cytoskeleton during entry. While microtubules and microfilaments appear to facilitate viral capsid transport toward the nucleus, evidence for a role of intermediate filaments in herpesvirus entry is lacking. Here, we examined the function of vimentin intermediate filaments in fibroblasts during the initial phase of infection of two genotypically distinct strains of human cytomegalovirus (CMV), one with narrow (AD169) and one with broad (TB40/E) cell tropism. Chemical disruption of the vimentin network with acrylamide, intermediate filament bundling in cells from a patient with giant axonal neuropathy, and absence of vimentin in fibroblasts from vimentin(-/-) mice severely reduced entry of either strain. In vimentin null cells, viral particles remained in the cytoplasm longer than in vimentin(+/+) cells. TB40/E infection was consistently slower than that of AD169 and was more negatively affected by the disruption or absence of vimentin. These findings demonstrate that an intact vimentin network is required for CMV infection onset, that intermediate filaments may function during viral entry to facilitate capsid trafficking and/or docking to the nuclear envelope, and that maintenance of a broader cell tropism is associated with a higher degree of dependence on the vimentin cytoskeleton.
与所有病毒一样,疱疹病毒在进入宿主细胞时会与宿主细胞骨架广泛相互作用。虽然微管和微丝似乎有助于病毒衣壳向细胞核运输,但缺乏中间丝在疱疹病毒进入过程中发挥作用的证据。在此,我们研究了波形蛋白中间丝在成纤维细胞中的功能,该细胞处于两种基因不同的人巨细胞病毒(CMV)毒株感染的初始阶段,一种具有狭窄(AD169)细胞嗜性,另一种具有广泛(TB40/E)细胞嗜性。用丙烯酰胺对波形蛋白网络进行化学破坏、来自一名巨大轴索性神经病患者的细胞中中间丝成束,以及波形蛋白基因敲除(vimentin(-/-))小鼠的成纤维细胞中缺乏波形蛋白,均严重降低了两种毒株的进入效率。在波形蛋白缺失的细胞中,病毒颗粒在细胞质中停留的时间比在波形蛋白正常(vimentin(+/+))的细胞中更长。TB40/E感染始终比AD169慢,并且受波形蛋白破坏或缺失的负面影响更大。这些发现表明,完整的波形蛋白网络是CMV感染起始所必需的,中间丝可能在病毒进入过程中发挥作用,以促进衣壳运输和/或与核膜对接,并且维持更广泛的细胞嗜性与对波形蛋白细胞骨架的更高程度依赖性相关。