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莫洛尼鼠白血病病毒温度敏感突变体在装配过程中受限的缺陷的电子显微镜表征

Electron microscopic characterization of the defectiveness of a temperature-sensitive mutant of Moloney murine leukemia virus restricted in assembly.

作者信息

Yuen P H, Wong P K

出版信息

J Virol. 1977 Oct;24(1):222-30. doi: 10.1128/JVI.24.1.222-230.1977.

Abstract

The effect of temperature shiftdown on the assembly of ts3 virions was investigated by both scanning (SEM) and transmission (TEM) electron microscopy. Ts3 is a spontaneous temperature-sensitive mutant of Moloney murine leukemia virus (Mo-MuLV) which previous studies indicated to be defective in assembly or release of the virions. In the present study, both SEM and TEM revealed the following: (i) there were more cell-associated virions in ts3-infected cells grown at the nonpermissive temperature (39 degrees C) than either in cells grown at the permissive temperature (34 degrees C) or in wild-type MuLV-infected cells grown at 39 degrees C; (ii) there were more normal single particles than multiploids (virions with two or more pieces of genomic RNA) in ts3-infected cells grown at the nonpermissive temperature; (iii) there were more multiploids in ts3-infected cells grown at the nonpermissive temperature than either in cells grown at the permissive temperature or in wild-type MuLV-infected cells grown at the nonpermissive temperature; (iv) upon temperature shift from 39 to 34 degrees C, about 90% of the cell-associated virions dissociated from the cell surface. TEM studies also indicated that upon temperature shiftdown, virion assembly rapidly occurred. The above observations suggest that faulty assembly, which results in the production of multiploids, may not be the reason why ts3 virions accumulate on the cell surface at the nonpermissive temperature. The relatively higher proportion of multiploids found in ts3-infected cells grown at 39 degrees C compared with those grown at 34 degrees C may be due to the higher density of budding virions at the cell surface at the nonpermissive temperature, which increases the possibility of two or more particles assembling close to one another. The accumulation of ts3 virions in all stages of assembly at the nonpermissive temperature, together with the fact that rapid assembly and release of ts3 virions occurred on temperature shiftdown, indicates that virion assembly is restricted after it has been initiated. The probable role of altered glycoprotein(s) in restricting virion assembly is discussed.

摘要

通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了温度降低对ts3病毒粒子组装的影响。Ts3是莫洛尼鼠白血病病毒(Mo-MuLV)的一个自发温度敏感突变体,先前的研究表明其在病毒粒子的组装或释放方面存在缺陷。在本研究中,SEM和TEM均显示如下情况:(i)在非允许温度(39℃)下生长的ts3感染细胞中,与细胞相关的病毒粒子比在允许温度(34℃)下生长的细胞或在39℃下生长的野生型MuLV感染细胞中的更多;(ii)在非允许温度下生长的ts3感染细胞中,正常单粒子比多倍体(含有两条或更多条基因组RNA的病毒粒子)更多;(iii)在非允许温度下生长的ts3感染细胞中,多倍体比在允许温度下生长的细胞或在非允许温度下生长的野生型MuLV感染细胞中的更多;(iv)当温度从39℃转变为34℃时,约90%与细胞相关的病毒粒子从细胞表面解离。TEM研究还表明,温度降低后,病毒粒子组装迅速发生。上述观察结果表明,导致多倍体产生的组装缺陷可能不是ts3病毒粒子在非允许温度下在细胞表面积累的原因。与在34℃下生长的细胞相比,在39℃下生长的ts3感染细胞中发现的多倍体比例相对较高,可能是由于在非允许温度下细胞表面出芽病毒粒子的密度较高,这增加了两个或更多粒子彼此靠近组装的可能性。在非允许温度下ts

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/613d/515925/e0632be46d62/jvirol00214-0238-a.jpg

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