群体特异性抗原
生物
萌芽
核糖核酸
病毒学
病毒结构蛋白
病毒包膜
细胞生物学
多聚蛋白质类
病毒蛋白
支架蛋白
病毒进入
计算生物学
人类免疫缺陷病毒(HIV)
病毒
病毒复制
遗传学
基因
信号转导
作者
Neil M. Bell,Andrew Lever
标识
DOI:10.1016/j.tim.2012.11.006
摘要
Over the past several decades, extensive research into the Gag polyprotein, the main structural protein of HIV-1 and all other retroviruses, has changed the way that we describe Gag's role within viral lifecycles. Initially thought of as a simple scaffold protein forming the viral core, Gag has demonstrated the ability to specifically recognize genomic RNA and both viral and host proteins as it traffics to the cell membrane. There, Gag forms higher ordered structures required for the correct assembly, budding, and maturation of new infectious particles. Over the past several decades, extensive research into the Gag polyprotein, the main structural protein of HIV-1 and all other retroviruses, has changed the way that we describe Gag's role within viral lifecycles. Initially thought of as a simple scaffold protein forming the viral core, Gag has demonstrated the ability to specifically recognize genomic RNA and both viral and host proteins as it traffics to the cell membrane. There, Gag forms higher ordered structures required for the correct assembly, budding, and maturation of new infectious particles.
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