Ali Bazla, Desmond Maxim I, Mallory Sara A, Benítez Andrea D, Buckley Larry J, Weintraub Susan T, Osier Michael V, Black Lindsay W, Thomas Julie A
Thomas H. Gosnell School of Life Sciences, Rochester Institute of Technology, Rochester, NY, United States.
Biochemistry, University of Texas Health Science Center at San Antonio, San Antonio, TX, United States.
Front Microbiol. 2017 Nov 15;8:2251. doi: 10.3389/fmicb.2017.02251. eCollection 2017.
Giant phage SPN3US has a 240-kb dsDNA genome and a large complex virion composed of many proteins for which the functions of most are undefined. We recently determined that SPN3US shares a core set of genes with related giant phages and sequenced and characterized 18 amber mutants to facilitate its use as a genetic model system. Notably, SPN3US and related giant phages contain a bolus of ejection proteins within their heads, including a multi-subunit virion RNA polymerase (vRNAP), that enter the host cell with the DNA during infection. In this study, we characterized the SPN3US virion using mass spectrometry to gain insight into its head composition and the features that its head shares with those of related giant phages and with T4 phage. SPN3US has only homologs to the T4 proteins critical for prohead shell formation, the portal and major capsid proteins, as well as to the major enzymes essential for head maturation, the prohead protease and large terminase subunit. Eight of ~50 SPN3US head proteins were found to undergo proteolytic processing at a cleavage motif by the prohead protease gp245. Gp245 undergoes auto-cleavage of its -terminus, suggesting this is a conserved activation and/or maturation feature of related phage proteases. Analyses of essential head gene mutants showed that the five subunits of the vRNAP must be assembled for any subunit to be incorporated into the prohead, although the assembled vRNAP must then undergo subsequent major conformational rearrangements in the DNA packed capsid to allow ejection through the ~30 Å diameter tail tube for transcription from the injected DNA. In addition, ejection protein candidate gp243 was found to play a critical role in head assembly. Our analyses of the vRNAP and gp243 mutants highlighted an unexpected dichotomy in giant phage head maturation: while all analyzed giant phages have a homologous protease that processes major capsid and portal proteins, processing of ejection proteins is not always a stable/defining feature. Our identification in SPN3US, and related phages, of a diverged paralog to the prohead protease further hints toward a complicated evolutionary pathway for giant phage head structure and assembly.
巨型噬菌体SPN3US拥有一个240千碱基对的双链DNA基因组和一个由许多蛋白质组成的大型复杂病毒体,其中大多数蛋白质的功能尚不清楚。我们最近确定,SPN3US与相关巨型噬菌体共享一组核心基因,并对18个琥珀突变体进行了测序和表征,以促进其作为遗传模型系统的应用。值得注意的是,SPN3US和相关巨型噬菌体在其头部含有大量的喷射蛋白,包括一个多亚基病毒体RNA聚合酶(vRNAP),在感染期间它会与DNA一起进入宿主细胞。在这项研究中,我们使用质谱对SPN3US病毒体进行了表征,以深入了解其头部组成以及其头部与相关巨型噬菌体和T4噬菌体头部共有的特征。SPN3US仅与对前头部外壳形成至关重要的T4蛋白、门户蛋白和主要衣壳蛋白具有同源性,以及与头部成熟所必需的主要酶、前头部蛋白酶和大型末端酶亚基具有同源性。在约50种SPN3US头部蛋白中,有八种被发现会被前头部蛋白酶gp245在一个切割基序处进行蛋白水解加工。Gp245的N末端会进行自我切割,这表明这是相关噬菌体蛋白酶的一个保守的激活和/或成熟特征。对必需头部基因突变体的分析表明,vRNAP的五个亚基必须组装好,任何一个亚基才能被纳入前头部,尽管组装好的vRNAP随后必须在包装了DNA的衣壳中经历后续的主要构象重排,以允许通过直径约30埃的尾管进行喷射,从而从注入的DNA进行转录。此外,发现喷射蛋白候选物gp243在头部组装中起关键作用。我们对vRNAP和gp243突变体的分析突出了巨型噬菌体头部成熟中一个意想不到的二分法:虽然所有分析的巨型噬菌体都有一个同源蛋白酶来加工主要衣壳蛋白和门户蛋白,但喷射蛋白的加工并不总是一个稳定/确定的特征。我们在SPN3US和相关噬菌体中鉴定出一种与前头部蛋白酶不同的旁系同源物,这进一步暗示了巨型噬菌体头部结构和组装的复杂进化途径。