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纳米病毒茎环结构差异组成及其影响的研究进展。

Insights into the Differential Composition of Stem-Loop Structures of Nanoviruses and Their Impacts.

机构信息

Department of Integrative Biotechnology, Sungkyunkwan University, Suwon, South Korea.

Department of Plant Medicals, College of Life Sciences, Andong National University, Andong, South Korea.

出版信息

Microbiol Spectr. 2023 Aug 17;11(4):e0479822. doi: 10.1128/spectrum.04798-22. Epub 2023 Jun 27.

Abstract

Multipartite viruses package their genomic segments independently and mainly infect plants; few of them target animals. is a family of multipartite single-stranded DNA (ssDNA) plant viruses that individually encapsidate ssDNAs of ~1 kb and transmit them through aphids without replication in aphid vectors, thereby causing important diseases in host plants, mainly leguminous crops. All of these components constitute an open reading frame to perform a specific role in nanovirus infection. All segments contain conserved inverted repeat sequences, potentially forming a stem-loop structure and a conserved nonanucleotide, TAGTATTAC, within a common region. This study investigated the variations in the stem-loop structure of nanovirus segments and their impact using molecular dynamics (MD) simulations and wet lab approaches. Although the accuracy of MD simulations is limited by force field approximations and simulation time scale, explicit solvent MD simulations were successfully used to analyze the important aspects of the stem-loop structure. This study involves the mutants' design, based on the variations in the stem-loop region and construction of infectious clones, followed by their inoculation and expression analysis, based on nanosecond dynamics of the stem-loop structure. The original stem-loop structures showed more conformational stability than mutant stem-loop structures. The mutant structures were expected to alter the neck region of the stem-loop by adding and switching nucleotides. Changes in conformational stability are suggested expression variations of the stem-loop structures found in host plants with nanovirus infection. However, our results can be a starting point for further structural and functional analysis of nanovirus infection. Nanoviruses comprise multiple segments, each with a single open reading frame to perform a specific function and an intergenic region with a conserved stem-loop region. The genome expression of a nanovirus has been an intriguing area but is still poorly understood. We attempted to investigate the variations in the stem-loop structure of nanovirus segments and their impact on viral expression. Our results show that the stem-loop composition is essential in controlling the virus segments' expression level.

摘要

多组分病毒独立包装其基因组片段,主要感染植物;少数病毒以动物为目标。是一类多组分单链 DNA(ssDNA)植物病毒,每个病毒单独包裹约 1kb 的 ssDNA,并通过蚜虫传播而不在蚜虫载体中复制,从而在宿主植物中引起重要疾病,主要是豆科作物。所有这些成分构成一个开放阅读框,在纳米病毒感染中执行特定功能。所有片段都包含保守的反向重复序列,可能形成茎环结构和一个保守的九核苷酸,TAGTATTAC,在共同区域内。本研究使用分子动力学(MD)模拟和湿实验室方法研究了纳米病毒片段的茎环结构变化及其影响。尽管 MD 模拟的准确性受到力场近似和模拟时间尺度的限制,但明确溶剂 MD 模拟成功地用于分析茎环结构的重要方面。本研究涉及基于茎环区域的变体设计和传染性克隆的构建,然后基于茎环结构的纳秒动力学进行接种和表达分析。原始茎环结构显示出比突变茎环结构更高的构象稳定性。突变结构预计通过添加和切换核苷酸来改变茎环的颈部区域。构象稳定性的变化表明,感染纳米病毒的宿主植物中的茎环结构表达发生变化。然而,我们的结果可以为纳米病毒感染的结构和功能分析提供一个起点。纳米病毒由多个片段组成,每个片段都有一个开放阅读框来执行特定功能和一个基因间区,具有保守的茎环区。纳米病毒的基因组表达一直是一个有趣的领域,但仍知之甚少。我们试图研究纳米病毒片段的茎环结构变化及其对病毒表达的影响。我们的结果表明,茎环组成对于控制病毒片段的表达水平至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c752/10434203/abc255460176/spectrum.04798-22-f001.jpg

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