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Examining the Heterogeneous Genome Content of Multipartite Viruses BMV and CCMV by Native Mass Spectrometry

机译:通过天然质谱检查多方病毒BMV和CCMV的异质基因组含量

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摘要

Since the concept was first introduced by Brian Chait and co-workers in 1991, mass spectrometry of proteins and protein complexes under non-denaturing conditions (native MS) has strongly developed, through parallel advances in instrumentation, sample preparation, and data analysis tools. However, the success rate of native MS analysis, particularly in heterogeneous mega-Dalton (MDa) protein complexes, still strongly depends on careful instrument modification. Here, we further explore these boundaries in native mass spectrometry, analyzing two related endogenous multipartite viruses: the Brome Mosaic Virus (BMV) and the Cowpea Chlorotic Mottle Virus (CCMV). Both CCMV and BMV are approximately 4.6 megadalton (MDa) in mass, of which approximately 1 MDA originates from the genomic content of the virion. Both viruses are produced as mixtures of three particles carrying different segments of the genome, varying by approximately 0.1 MDA in mass (~2%). This mixture of particles poses a challenging analytical problem for high-resolution native MS analysis, given the large mass scales involved. We attempt to unravel the particle heterogeneity using both Q-TOF and Orbitrap mass spectrometers extensively modified for analysis of very large assemblies. We show that manipulation of the charging behavior can provide assistance in assigning the correct charge states. Despite their challenging size and heterogeneity, we obtained native mass spectra with resolved series of charge states for both BMV and CCMV, demonstrating that native MS of endogenous multipartite virions is feasible.>Graphical Abstract
机译:自从Brian Chait及其同事于1991年首次提出该概念以来,通过仪器,样品制备和数据分析工具的并行改进,非变性条件下蛋白质和蛋白质复合物的质谱(天然MS)得到了强有力的发展。但是,本机MS分析的成功率,尤其是在异质超大型道尔顿(MDa)蛋白质复合物中的成功率,仍然强烈取决于仔细的仪器修改。在这里,我们进一步在天然质谱中探索这些边界,分析了两种相关的内源性多方病毒:布罗姆花叶病毒(BMV)和the豆绿斑驳病毒(CCMV)。 CCMV和BMV的质量均约为4.6兆道尔顿(MDa),其中约1 MDA来源于病毒体的基因组含量。两种病毒都是带有三个携带基因组不同片段的颗粒的混合物,质量相差约0.1 MDA(〜2%)。考虑到所涉及的大规模规模,这种颗粒混合物对于高分辨率的天然MS分析提出了一个具有挑战性的分析问题。我们尝试使用经过广泛修改的Q-TOF和Orbitrap质谱仪来揭示颗粒异质性,以分析超大型组件。我们表明,对充电行为的操纵可以为分配正确的充电状态提供帮助。尽管它们具有挑战性的大小和异质性,但我们获得了BMV和CCMV具有解析的电荷状态序列的原始质谱图,表明内源性多粒子病毒体的MS可行。<!-fig ft0-> <!-fig @ position =“ anchor” mode = article f4-> <!-fig mode =“ anchored” f5-> > Graphic Abstract <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1 -> <!-标题a7->ᅟ

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