衣壳
核糖核酸
离子强度
二十面体对称
吸引力
病毒
RNA病毒
核酸酶
蛋白质亚单位
化学
结晶学
生物物理学
生物
病毒学
DNA
遗传学
基因
水溶液
语言学
哲学
物理化学
作者
Rees F. Garmann,Mauricio Comas‐García,Ajaykumar Gopal,Charles M. Knobler,William M. Gelbart
标识
DOI:10.1016/j.jmb.2013.10.017
摘要
The strength of attraction between capsid proteins (CPs) of cowpea chlorotic mottle virus (CCMV) is controlled by the solution pH. Additionally, the strength of attraction between CP and the single-stranded RNA viral genome is controlled by ionic strength. By exploiting these properties, we are able to control and monitor the in vitro co-assembly of CCMV CP and single-stranded RNA as a function of the strength of CP–CP and CP–RNA attractions. Using the techniques of velocity sedimentation and electron microscopy, we find that the successful assembly of nuclease-resistant virus-like particles (VLPs) depends delicately on the strength of CP–CP attraction relative to CP–RNA attraction. If the attractions are too weak, the capsid cannot form; if they are too strong, the assembly suffers from kinetic traps. Separating the process into two steps—by first turning on CP–RNA attraction and then turning on CP–CP attraction—allows for the assembly of well-formed VLPs under a wide range of attraction strengths. These observations establish a protocol for the efficient in vitro assembly of CCMV VLPs and suggest potential strategies that the virus may employ in vivo.
科研通智能强力驱动
Strongly Powered by AbleSci AI