...
首页> 外文期刊>Nanoscale >Stepwise reversible nanomechanical buckling in a viral capsid
【24h】

Stepwise reversible nanomechanical buckling in a viral capsid

机译:逐步可逆的纳米机械屈曲病毒衣壳

获取原文
获取原文并翻译 | 示例

摘要

Viruses are nanoscale infectious agents constructed of a proteinaceous capsid that protects the packaged genomic material. Nanoindentation experiments using atomic force microscopy have, in recent years, provided unprecedented insight into the elastic properties, structural stability and maturation-dependent mechanical changes in viruses. However, the dynamics of capsid behavior are still unresolved. Here we used high-resolution nanoindentation experiments on mature, DNA-filled T7 bacteriophage particles. The elastic regime of the nanoindentation force trace contained discrete, stepwise transitions that cause buckling of the T7 capsid with magnitudes that are integer multiples of similar to 0.6 nm. Remarkably, the transitions are reversible and contribute to the rapid consolidation of the capsid structure against a force during cantilever retraction. The stepwise transitions were present even following the removal of the genomic DNA by heat treatment, indicating that they are related to the structure and dynamics of the capsomeric proteins. Dynamic force spectroscopy experiments revealed that the thermally activated consolidation step is similar to 10(4) times faster than spontaneous buckling, suggesting that the capsid stability is under strong dynamic control. Capsid structural dynamics may play an important role in protecting the genomic material from harsh environmental impacts. The nanomechanics approach employed here may be used to investigate the structural dynamics of other viruses and nanoscale containers as well.
机译:病毒纳米传染性病原体构建的蛋白质衣壳保护基因材料包装。使用原子力Nanoindentation实验显微镜,近年来,提供弹性前所未有的洞察力性能、结构稳定性和maturation-dependent机械的变化病毒仍然没有解决。高分辨率nanoindentation实验成熟,充满dna T7噬菌体粒子。弹性nanoindentation政权的力量跟踪包含离散,逐步过渡导致屈曲的T7衣壳整数倍的大小相似0.6纳米。可逆,有助于快速对整合的衣壳结构在悬臂收缩力。转换甚至出现后基因组DNA的热处理,表明他们是相关的结构和动力学的capsomeric蛋白质。力光谱学实验显示热激活整合步骤是相似的10(4)倍自然屈曲,这表明下衣壳稳定性强大的动态控制。动力学可能在保护起着重要的作用基因材料从严酷的环境影响。可用于研究结构其他病毒动力学和纳米级容器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号