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首页> 外文期刊>Journal of proteome research >Proteomic analysis of sulfolobus solfataricus during sulfolobus turreted icosahedral virus infection
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Proteomic analysis of sulfolobus solfataricus during sulfolobus turreted icosahedral virus infection

机译:硫磺球菌炮制二十面体病毒感染过程中的硫磺球菌的蛋白质组学分析

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摘要

Where there is life, there are viruses. The impact of viruses on evolution, global nutrient cycling, and disease has driven research on their cellular and molecular biology. Knowledge exists for a wide range of viruses; however, a major exception are viruses with archaeal hosts. Archaeal virus-host systems are of great interest because they have similarities to both eukaryotic and bacterial systems and often live in extreme environments. Here we report the first proteomics-based experiments on archaeal host response to viral infection. Sulfolobus Turreted Icosahedral Virus (STIV) infection of Sulfolobus solfataricus P2 was studied using 1D and 2D differential gel electrophoresis (DIGE) to measure abundance and redox changes. Cysteine reactivity was measured using novel fluorescent zwitterionic chemical probes that, together with abundance changes, suggest that virus and host are both vying for control of redox status in the cells. Proteins from nearly 50% of the predicted viral open reading frames were found along with a new STIV protein with a homologue in STIV2. This study provides insight to features of viral replication novel to the archaea, makes strong connections to well-described mechanisms used by eukaryotic viruses such as ESCRT-III mediated transport, and emphasizes the complementary nature of different omics approaches.
机译:有生命的地方就有病毒。病毒对进化,全球营养循环和疾病的影响推动了对其细胞和分子生物学的研究。存在关于各种病毒的知识;但是,一个主要例外是带有古细菌宿主的病毒。古细菌宿主系统引起人们极大的兴趣,因为它们与真核和细菌系统都有相似之处,并且通常生活在极端环境中。在这里,我们报告了第一份基于蛋白质组学的古细菌宿主对病毒感染反应的实验。使用1D和2D差异凝胶电泳(DIGE)研究了Sulfolobus solfataricus P2的Sulfolobus转塔二十面体病毒(STIV)感染,以测量丰度和氧化还原变化。使用新型的荧光两性离子化学探针测量了半胱氨酸的反应性,其丰度变化表明病毒和宿主都在争夺细胞中氧化还原状态的控制权。发现了来自将近50%的预计病毒开放阅读框的蛋白质,以及与STIV2具有同源性的新型STIV蛋白。这项研究提供了对古细菌新颖的病毒复制特征的见解,与真核病毒使用的成熟机制(如ESCRT-III介导的转运)建立了紧密联系,并强调了不同组学方法的互补性。

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