Karhu Nelli J, Ziedaite Gabija, Bamford Dennis H, Bamford Jaana K H
Department of Biological and Environmental Science, Institute of Biotechnology, University of Helsinki, Biocenter 2, Viikinkaari 5, FIN-00014 University of Helsinki, Finland.
J Virol. 2007 Mar;81(6):2970-9. doi: 10.1128/JVI.02211-06. Epub 2007 Jan 3.
The assembly of bacteriophage PRD1 proceeds via formation of empty procapsids containing an internal lipid membrane, into which the linear double-stranded DNA genome is subsequently packaged. The packaging ATPase P9 and other putative packaging proteins have been shown to be located at a unique vertex of the PRD1 capsid. Here, we describe the isolation and characterization of a suppressor-sensitive PRD1 mutant deficient in the unique vertex protein P6. Protein P6 was found to be an essential part of the PRD1 packaging machinery; its absence leads to greatly reduced packaging efficiency. Lack of P6 was not found to affect particle assembly, because in the P6-deficient mutant infection, wild-type (wt) amounts of particles were produced, although most were empty. P6 was determined not to be a specificity factor, as the few filled particles seen in the P6-deficient infection contained only PRD1-specific DNA. The presence of P6 was not necessary for retention of DNA in the capsid once packaging had occurred, and P6-deficient DNA-containing particles were found to be stable and infectious, albeit not as infectious as wt PRD1 virions. A packaging model for bacteriophage PRD1, based on previous results and those obtained in this study, is presented.
噬菌体PRD1的组装过程是先形成含有内部脂质膜的空原衣壳,随后将线性双链DNA基因组包装到其中。包装ATP酶P9和其他假定的包装蛋白已被证明位于PRD1衣壳的一个独特顶点。在此,我们描述了一种对抑制敏感的PRD1突变体的分离和表征,该突变体缺乏独特的顶点蛋白P6。发现蛋白P6是PRD1包装机制的重要组成部分;其缺失导致包装效率大幅降低。未发现缺乏P6会影响颗粒组装,因为在缺乏P6的突变体感染中,产生了野生型(wt)数量的颗粒,尽管大多数是空的。确定P6不是特异性因子,因为在缺乏P6的感染中看到的少数填充颗粒仅含有PRD1特异性DNA。一旦发生包装,P6的存在对于DNA保留在衣壳中不是必需的,并且发现缺乏P6的含DNA颗粒是稳定且有感染性的,尽管不如wt PRD1病毒体有感染性。基于先前结果和本研究获得的结果,提出了噬菌体PRD1的包装模型。