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Tobacco mosaic virus particle structure and the initiation of disassembly

机译:烟草花叶病毒颗粒结构与分解的启动

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摘要

The structure of an intact tobacco mosaic virus (TMV) particle was determined at 2.9 A resolution using fibre diffraction methods. All residues of the coat protein and the three nucleotides of RNA that are bound to each protein subunit were visible in the electron density map. Examination of the structures of TMV, cucumber green mottle mosaic virus and ribgrass mosaic virus, and site-directed mutagenesis experiments in which carboxylate groups were changed to the corresponding amides, showed that initial stages of disassembly are driven by complex electrostatic interactions involving at at least seven carboxylate side-chains and a phosphate group. The locations of these interactions can drift during evolution, allowing the viruses to evade plant defensive responses that depend on recognition of the viral coat protein surface.
机译:使用纤维衍射法以2.9 A的分辨率确定完整的烟草花叶病毒(TMV)颗粒的结构。在电子密度图中可见外壳蛋白的所有残基和与每个蛋白亚基结合的RNA的三个核苷酸。对TMV,黄瓜绿斑驳花叶病毒和核果草花叶病毒的结构进行了检查,并进行了定点诱变实验,在实验中,羧酸根基团变为相应的酰胺,表明分解的初始阶段是由复杂的静电相互作用驱动的,该相互作用至少涉及七个羧酸根侧链和一个磷酸基团。这些相互作用的位置在进化过程中可能会漂移,从而使病毒能够逃避依赖于病毒外壳蛋白表面识别的植物防御反应。

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