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伪狂犬病病毒的糖蛋白gH对于在细胞培养物和小鼠神经系统中的穿透和增殖至关重要。

Glycoprotein gH of pseudorabies virus is essential for penetration and propagation in cell culture and in the nervous system of mice.

作者信息

Babic N, Klupp B G, Makoschey B, Karger A, Flamand A, Mettenleiter T C

机构信息

Laboratoire de Génétique des Virus, CNRS, Gif-sur-Yvette, France.

出版信息

J Gen Virol. 1996 Sep;77 ( Pt 9):2277-85. doi: 10.1099/0022-1317-77-9-2277.

Abstract

Glycoprotein H (gH) of pseudorabies virus (PrV) is a structural component of the virion and forms a complex with another glycoprotein, gL. For a detailed analysis of the function of PrV gH, we isolated a gH-deficient mutant on trans-complementing gH-expressing cells after insertion of a beta-galactosidase expression cassette into a partially deleted gH gene. The absence of gH did not affect primary or secondary attachment of PrV but the mutant was not infectious. The defect in infectivity could partially be overcome by experimentally induced membrane fusion using PEG, which suggests that gH was necessary for fusion between virion and cellular membranes. After intranasal inoculation into mice, the LD50 of complemented gH- PrV was more than four orders of magnitude higher than that of wild-type PrV. Infection of the respiratory epithelium was much less efficient with complemented gH- PrV as compared with rescued PrV, reflecting the lack of direct cell-to-cell spread. Complemented gH- PrV was able to penetrate into a few trigeminal and sympathetic first order neurons accessible from the nasal cavity, whereas transneuronal transfer in the second order neurons was not observed. In summary, gH is essential for entry and cell-to-cell spread in cell culture, and for propagation in the nervous system of mice. This substantiates the hypothesis that transneuronal spread in vivo and direct cell-to-cell spread in cell culture are governed by similar mechanisms.

摘要

伪狂犬病病毒(PrV)的糖蛋白H(gH)是病毒粒子的一种结构成分,可与另一种糖蛋白gL形成复合物。为了详细分析PrV gH的功能,我们在将β-半乳糖苷酶表达盒插入部分缺失的gH基因后,在反式互补表达gH的细胞上分离出了一种gH缺陷型突变体。gH的缺失不影响PrV的初次或二次附着,但该突变体没有感染性。使用聚乙二醇(PEG)通过实验诱导膜融合可部分克服感染性缺陷,这表明gH对于病毒粒子与细胞膜之间的融合是必需的。经鼻内接种小鼠后,互补gH - PrV的半数致死剂量(LD50)比野生型PrV高四个数量级以上。与拯救的PrV相比,互补gH - PrV对呼吸道上皮的感染效率要低得多,这反映出缺乏直接的细胞间传播。互补gH - PrV能够穿透少数可从鼻腔进入的三叉神经和交感神经一级神经元,但未观察到在二级神经元中的跨神经元转移。总之,gH对于细胞培养中的进入和细胞间传播以及在小鼠神经系统中的增殖至关重要。这证实了体内跨神经元传播和细胞培养中直接细胞间传播受相似机制支配的假说。

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