牛油果斑病类病毒的拉曼特性及其对外部扰动和自裂的响应。

Q1 Biochemistry, Genetics and Molecular Biology
Gaston Hui-Bon-Hoa, Hussein Kaddour, Jacques Vergne, Sergei G Kruglik, Marie-Christine Maurel
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引用次数: 14

摘要

背景:类病毒是植物中最小的病原体。迄今为止,牛油果类太阳斑病毒(Avocado sunblotch virus oid, ASBVd)裂解的结构和构象细节以及Mg2+离子在有效自裂解中的催化作用是至关重要的。结果:我们报道了ASBVd的结构和活性的第一个拉曼表征,包括正负类病毒链。这两条链都表现出典型的a型RNA构象,具有有序的双螺旋内容物和C3'-末端/抗糖皱结构,尽管在糖皱和碱基堆积区域发现了微小但特定的差异。ASBVd(-)的自裂活性是ASBVd(+)的3.5倍。氘化和温度升高对双螺旋含量和磷酸二酯构象的扰动不同,其特征拉曼光谱变化表明。我们的数据表明,与ASBVd(-)相比,ASBVd(+)的结构刚度和稳定性更高,D2O对h键网络的可及性更低。值得注意的是,Mg2+激活的类病毒自裂不会引起二级类病毒结构的任何显著改变,这一点可以从拉曼标记带的强度变化中得到证明,然而,这些拉曼标记带表现出微小但明显的频率下降,这表明被切割的类病毒的磷二氧基、内部环和发夹发生了一些微小的变化。结论:我们的研究结果证明了拉曼光谱在监测类病毒结构和构象变化方面的敏感性,并为进一步研究其与治疗剂和细胞膜的相互作用奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Raman characterization of Avocado Sunblotch viroid and its response to external perturbations and self-cleavage.

Raman characterization of Avocado Sunblotch viroid and its response to external perturbations and self-cleavage.

Raman characterization of Avocado Sunblotch viroid and its response to external perturbations and self-cleavage.

Raman characterization of Avocado Sunblotch viroid and its response to external perturbations and self-cleavage.

Background: Viroids are the smallest pathogens of plants. To date the structural and conformational details of the cleavage of Avocado sunblotch viroid (ASBVd) and the catalytic role of Mg2+ ions in efficient self-cleavage are of crucial interest.

Results: We report the first Raman characterization of the structure and activity of ASBVd, for plus and minus viroid strands. Both strands exhibit a typical A-type RNA conformation with an ordered double-helical content and a C3'-endo/anti sugar pucker configuration, although small but specific differences are found in the sugar puckering and base-stacking regions. The ASBVd(-) is shown to self-cleave 3.5 times more actively than ASBVd(+). Deuteration and temperature increase perturb differently the double-helical content and the phosphodiester conformation, as revealed by corresponding characteristic Raman spectral changes. Our data suggest that the structure rigidity and stability are higher and the D2O accessibility to H-bonding network is lower for ASBVd(+) than for ASBVd(-). Remarkably, the Mg2+-activated self-cleavage of the viroid does not induce any significant alterations of the secondary viroid structure, as evidenced from the absence of intensity changes of Raman marker bands that, however exhibit small but noticeable frequency downshifts suggesting several minor changes in phosphodioxy, internal loops and hairpins of the cleaved viroids.

Conclusions: Our results demonstrate the sensitivity of Raman spectroscopy in monitoring structural and conformational changes of the viroid and constitute the basis for further studies of its interactions with therapeutic agents and cell membranes.

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BMC Biophysics
BMC Biophysics BIOPHYSICS-
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