首页> 美国卫生研究院文献>Journal of Virology >Pathogenicity of Different Rabies Virus Variants Inversely Correlates with Apoptosis and Rabies Virus Glycoprotein Expression in Infected Primary Neuron Cultures
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Pathogenicity of Different Rabies Virus Variants Inversely Correlates with Apoptosis and Rabies Virus Glycoprotein Expression in Infected Primary Neuron Cultures

机译:不同的狂犬病病毒变种的致病性与感染的原代神经元培养物中的细胞凋亡和狂犬病病毒糖蛋白表达成反比。

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摘要

The mouse-adapted rabies virus strain CVS-24 has stable variants, CVS-B2c and CVS-N2c, which differ greatly in their pathogenicity for normal adult mice and in their ability to infect nonneuronal cells. The glycoprotein (G protein), which has previously been implicated in rabies virus pathogenicity, shows substantial structural differences between these variants. Although prior studies have identified antigenic site III of the G protein as the major pathogenicity determinant, CVS-B2c and CVS-N2c do not vary at this site. The possibility that pathogenicity is inversely related to G protein expression levels is suggested by the finding that CVS-B2c, the less pathogenic variant, expresses at least fourfold-higher levels of G protein than CVS-N2c in infected neurons. Although there is some difference between CVS-B2c- and CVS-N2c-infected neurons in G protein mRNA expression levels, the differential expression of G protein appears to be largely determined by posttranslational mechanisms that affect G protein stability. Pulse-chase experiments indicated that the G protein of CVS-B2c is degraded more slowly than that of CVS-N2c. The accumulation of G protein correlated with the induction of programmed cell death in CVS-B2c-infected neurons. The extent of apoptosis was considerably lower in CVS-N2c-infected neurons, where G protein expression was minimal. While nucleoprotein (N protein) expression levels were similar in neurons infected with either variant, the transport of N protein into neuronal processes was strongly inhibited in CVS-B2c-infected cells. Thus, downregulation of G protein expression in neuronal cells evidently contributes to rabies virus pathogenesis by preventing apoptosis and the apparently associated failure of the axonal transport of N protein.
机译:适应小鼠的狂犬病毒株CVS-24具有稳定的变体CVS-B2c和CVS-N2c,它们对正常成年小鼠的致病性和感染非神经细胞的能力差异很大。以前与狂犬病毒的致病性有关的糖蛋白(G蛋白)在这些变体之间显示出实质性的结构差异。尽管先前的研究已经确定G蛋白的抗原性位点III是主要的致病性决定因素,但CVS-B2c和CVS-N2c在该位点没有变化。通过发现在感染的神经元中,CVS-B2c(病原性较小的变体)表达的C蛋白水平比CVS-N2c高至少四倍,这提示了致病性与G蛋白表达水平成反比的可能性。尽管在CVS-B2c和CVS-N2c感染的神经元之间G蛋白mRNA表达水平存在差异,但G蛋白的差异表达似乎很大程度上取决于影响G蛋白稳定性的翻译后机制。脉冲追踪实验表明,CVS-B2c的G蛋白降解速度比CVS-N2c慢。 G蛋白的积累与CVS-B2c感染的神经元中程序性细胞死亡的诱导有关。在CVS-N2c感染的神经元中,其G蛋白表达最小,其凋亡程度明显较低。虽然在任一变体感染的神经元中核蛋白(N蛋白)的表达水平相似,但在CVS-B2c感染的细胞中N蛋白向神经元过程的运输受到了强烈抑制。因此,神经元细胞中G蛋白表达的下调显然通过预防细胞凋亡和N蛋白轴突转运的明显相关失败而促进了狂犬病毒的发病。

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