衣壳
生物物理学
噬菌体
二十面体对称
肌病毒科
结晶学
收缩(语法)
生物
化学
生物化学
遗传学
大肠杆菌
病毒
基因
内分泌学
作者
Feng Yang,Yong‐Liang Jiang,Juntao Zhang,Jie Zhu,Kang Du,Rong-Cheng Yu,Zi-Lu Wei,Wen-Wen Kong,Ning Cui,Weifang Li,Yuxing Chen,Qiong Li,Cong‐Zhao Zhou
标识
DOI:10.1073/pnas.2213727120
摘要
The myophage possesses a contractile tail that penetrates its host cell envelope. Except for investigations on the bacteriophage T4 with a rather complicated structure, the assembly pattern and tail contraction mechanism of myophage remain largely unknown. Here, we present the fine structure of a freshwater Myoviridae cyanophage Pam3, which has an icosahedral capsid of ~680 Å in diameter, connected via a three-section neck to an 840-Å-long contractile tail, ending with a three-module baseplate composed of only six protein components. This simplified baseplate consists of a central hub-spike surrounded by six wedge heterotriplexes, to which twelve tail fibers are covalently attached via disulfide bonds in alternating upward and downward configurations. In vitro reduction assays revealed a putative redox-dependent mechanism of baseplate assembly and tail sheath contraction. These findings establish a minimal myophage that might become a user-friendly chassis phage in synthetic biology.
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