Raytcheva Desislava A, Haase-Pettingell Cameron, Piret Jacqueline, King Jonathan A
Department of Biology, Northeastern University, Boston, Massachusetts, USA.
J Virol. 2014 Feb;88(4):2047-55. doi: 10.1128/JVI.02479-13. Epub 2013 Dec 4.
The marine cyanophage Syn5 can be propagated to a high titer in the laboratory on marine photosynthetic Synechococcus sp. strain WH8109. The purified particles carry a novel slender horn structure projecting from the vertex opposite the tail vertex. The genome of Syn5 includes a number of genes coding for novel proteins. Using immune-electron microscopy with gold-labeled antibodies, we show that two of these novel proteins, products of genes 53 and 54, are part of the horn structure. A third novel protein, the product of gene 58, is assembled onto the icosahedral capsid lattice. Characterization of radioactively labeled precursor procapsids by sucrose gradient centrifugation shows that there appear to be three classes of particles-procapsids, scaffold-deficient procapsids, and expanded capsids. These lack fully assembled horn appendages. The horn presumably assembles onto the virion just before or after DNA packaging. Antibodies raised to the recombinant novel Syn5 proteins did not interfere with phage infectivity, suggesting that the functions of these proteins are not directly involved in phage attachment or infection of the host WH8109. The horn structure may represent some adaption to the marine environment, whose function will require additional investigation.
海洋噬蓝藻病毒Syn5可在实验室中利用海洋光合聚球藻属菌株WH8109大量繁殖至高滴度。纯化后的病毒粒子带有一种新颖的细长角状结构,该结构从与尾顶点相对的顶点伸出。Syn5的基因组包含许多编码新蛋白的基因。通过使用金标抗体的免疫电子显微镜技术,我们发现这些新蛋白中的两种,即基因53和54的产物,是角状结构的一部分。第三种新蛋白,即基因58的产物,组装到二十面体衣壳晶格上。通过蔗糖梯度离心对放射性标记的前衣壳进行表征表明,似乎存在三类颗粒——前衣壳、缺乏支架的前衣壳和膨胀的衣壳。这些颗粒缺乏完全组装好的角状附属物。角状结构大概在DNA包装之前或之后组装到病毒体上。针对重组Syn5新蛋白产生的抗体不会干扰噬菌体的感染性,这表明这些蛋白的功能并不直接参与噬菌体对宿主WH8109的附着或感染。角状结构可能代表了对海洋环境的某种适应,其功能还需要进一步研究。