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Morphological and biochemical characterization of viral particles produced by the tsO45 mutant of vesicular stomatitis virus at restrictive temperature.

机译:水泡性口腔炎病毒tsO45突变体在限定温度下产生的病毒颗粒的形态和生化特征。

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摘要

The growth at restrictive temperature of tsO45, a group V (glycoprotein) conditional lethal mutant of vesicular stomatitis virus (VSV), was demonstrated to result in the production of large numbers of noninfectious viral particles. The infectivity of these tsO45 particles could be enhanced by procedures known to promote membrane fusion. Morphologically and biochemically these particles differed from wild-type VSV by their lack of viral glycoprotein. The other structural proteins of VSV were present and indistinguishable by size and relative proportion from those of virus grown at the permissive temperature. Examination of glycoprotein maturation at the restrictive temperature (39.5 degrees C) in tsO45-infected cells demonstrated the synthesis of normal viral glycoprotein but failed to demonstrate the presence of this glycoprotein in either the cell membrane or the envelope of free virions. The further absence of soluble viral glycoprotein from the supernatants of such cells strongly suggests that viral glycoprotein may not be necessary for the successful budding of VSV.
机译:tsO45是水泡性口炎病毒(VSV)的V组(糖蛋白)条件致死突变株,在限制温度下的生长导致大量无感染性病毒颗粒的产生。这些tsO45颗粒的感染性可以通过已知促进膜融合的方法来增强。在形态和生化上,这些颗粒与野生型VSV的区别在于它们缺乏病毒糖蛋白。存在VSV的其他结构蛋白,其大小和相对比例与在允许温度下生长的病毒的大小和相对比例没有区别。 tsO45感染的细胞在极限温度(39.5摄氏度)下对糖蛋白成熟度的检查证明了正常病毒糖蛋白的合成,但未能证明这种糖蛋白存在于细胞膜或游离病毒颗粒的包膜中。此类细胞的上清液中进一步缺乏可溶性病毒糖蛋白,这强烈表明,病毒糖蛋白可能不是VSV成功出芽的必要条件。

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