Gann Eric R, Xian Yuejiao, Abraham Paul E, Hettich Robert L, Reynolds Todd B, Xiao Chuan, Wilhelm Steven W
Department of Microbiology, The University of Tennessee, Knoxville, Knoxville, TN, United States.
Department of Chemistry and Biochemistry, The University of Texas at El Paso, El Paso, TX, United States.
Front Microbiol. 2020 Sep 8;11:2047. doi: 10.3389/fmicb.2020.02047. eCollection 2020.
Viruses modulate the function(s) of environmentally relevant microbial populations, yet considerations of the metabolic capabilities of individual virus particles themselves are rare. We used shotgun proteomics to quantitatively identify 43 virus-encoded proteins packaged within purified Virus (AaV) particles, normalizing data to the per-virion level using a 9.5-Å-resolution molecular reconstruction of the 1900-Å (AaV) particle that we generated with cryogenic electron microscopy. This packaged proteome was used to determine similarities and differences between members of different giant virus families. We noted that proteins involved in sugar degradation and binding (e.g., carbohydrate lyases) were unique to AaV among characterized giant viruses. To determine the extent to which this virally encoded metabolic capability was ecologically relevant, we examined the TARA Oceans dataset and identified genes and transcripts of viral origin. Our analyses demonstrated that putative giant virus carbohydrate lyases represented up to 17% of the marine pool for this function. In total, our observations suggest that the AaV particle has potential prepackaged metabolic capabilities and that these may be found in other giant viruses that are widespread and abundant in global oceans.
病毒可调节与环境相关的微生物种群的功能,但对单个病毒粒子本身代谢能力的研究却很少。我们使用鸟枪法蛋白质组学定量鉴定了纯化的病毒(AaV)粒子中包装的43种病毒编码蛋白,并利用我们通过低温电子显微镜生成的1900 Å(AaV)粒子的9.5 Å分辨率分子重建,将数据归一化到每个病毒粒子水平。这个包装的蛋白质组用于确定不同巨型病毒家族成员之间的异同。我们注意到,在已鉴定的巨型病毒中,参与糖降解和结合的蛋白质(如碳水化合物裂解酶)是AaV所特有的。为了确定这种病毒编码的代谢能力在生态上的相关程度,我们检查了TARA海洋数据集,并鉴定了病毒来源的基因和转录本。我们的分析表明,假定的巨型病毒碳水化合物裂解酶在该功能的海洋库中占比高达17%。总的来说,我们的观察结果表明,AaV粒子具有潜在的预包装代谢能力,并且这些能力可能存在于全球海洋中广泛且丰富的其他巨型病毒中。