Taylor Gwen M, Sanders David Avram
Department of Biological Sciences, Purdue University, West Lafayette, IN 47907-1392, USA.
Virology. 2003 Aug 1;312(2):295-305. doi: 10.1016/s0042-6822(03)00297-6.
The cytoplasmic domains of viral glycoproteins influence the trafficking and subcellular localization of the glycoproteins and their incorporation into virions. They also promote correct virus morphology and viral budding. The cytoplasmic domains of murine-leukemia-virus envelope-protein TM subunits regulate membrane fusion. During virion maturation the carboxy-terminal 16 amino acid residues of the TM protein are removed by the retroviral protease. Deletion of these residues activates envelope-protein-mediated membrane fusion. Our quantitative analysis of the effects of Moloney murine leukemia virus TM mutations on envelope-protein function support the proposition that a trimeric coiled coil in the TM cytoplasmic domain inhibits fusion. The data demonstrate that cleavage of the TM cytoplasmic domain is not required for viral entry and provide evidence for a model in which fusogenic and nonfusogenic conformations of the envelope protein exists in an equilibrium that is regulated by the cytoplasmic domain. In addition, a conserved tyrosine residue in the TM cytoplasmic domain was shown to play an important role in envelope-protein incorporation into retroviral particles.
病毒糖蛋白的胞质结构域影响糖蛋白的运输和亚细胞定位,以及它们掺入病毒粒子的过程。它们还促进正确的病毒形态和病毒出芽。鼠白血病病毒包膜蛋白TM亚基的胞质结构域调节膜融合。在病毒粒子成熟过程中,TM蛋白的羧基末端16个氨基酸残基被逆转录病毒蛋白酶去除。删除这些残基会激活包膜蛋白介导的膜融合。我们对莫洛尼鼠白血病病毒TM突变对包膜蛋白功能影响的定量分析支持了这样一种观点,即TM胞质结构域中的三聚体卷曲螺旋抑制融合。数据表明,TM胞质结构域的切割对于病毒进入不是必需的,并为一种模型提供了证据,在该模型中,包膜蛋白的融合和非融合构象存在于由胞质结构域调节的平衡中。此外,TM胞质结构域中一个保守的酪氨酸残基在包膜蛋白掺入逆转录病毒颗粒中起着重要作用。