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A Non-Symmetric Reconstruction Technique for Transcriptionally-Active Viral Assemblies 转录活性病毒组装体的非对称重构技术
Pub Date : 2015-08-01 DOI: 10.13188/2474-1914.1000004
Amina Rahimi, A. C. Varano, A. Demmert, L. Melanson, S. M. McDonald, Deborah F. Kelly
The molecular mechanisms by which RNA viruses coordinate their transcriptional activities are not fully understood. For rotavirus, an important pediatric gastroenteric pathogen, transcription occurs within a double-layered particle that encloses the viral genome. To date, there remains very little structural information available for actively-transcribing rotavirus double-layered particles, which could provide new insights for antiviral development. To improve our vision of these viral assemblies, we developed a new combinatorial strategy that utilizes currently available high-resolution image processing tools. First, we employed a 3D classification routine that allowed us to sort transcriptionally-active rotavirus assemblies on the basis of their internal density. Next, we implemented an additional 3D refinement procedure using the most active class of DLPs. For comparison, the refined structures were computed in parallel by (1) enforcing icosahedral symmetry, and by (2) using no symmetry operators. Comparing the resulting structures, we were able to visualize the continuum that exists between viral capsid proteins and the viral RNA for the first time.
RNA病毒协调其转录活动的分子机制尚不完全清楚。轮状病毒是一种重要的儿科胃肠道病原体,转录发生在包裹病毒基因组的双层颗粒内。迄今为止,关于轮状病毒双层活性转录颗粒的结构信息仍然很少,这可能为抗病毒药物的开发提供新的见解。为了提高我们对这些病毒组装的视野,我们开发了一种新的组合策略,利用当前可用的高分辨率图像处理工具。首先,我们采用3D分类程序,使我们能够根据其内部密度对转录活性轮状病毒组装进行分类。接下来,我们使用最活跃的dlp类别实现了额外的3D细化过程。为了比较,采用(1)强制二十面体对称和(2)不使用对称算子并行计算精细结构。比较得到的结构,我们第一次能够可视化存在于病毒衣壳蛋白和病毒RNA之间的连续体。
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Journal of analytical & molecular techniques
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