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双重DNA在纳米监禁中减弱
Sagun Jonchhe1, Shankar Pandey1, Deepak Karna1
1Department of Chemistry & Biochemistry, Kent State University, Kent, Ohio 44242, United States.
Journal of the American Chemical Society
|May 9, 2020
概括
纳米封闭意外地削弱了DNA的稳定性,降低了机械和热力学特性. 这表明DNA纳米结构可能在细胞环境中偏好非正规形式的B-DNA.
科学领域:
- 生物物理
- 纳米技术
- 分子生物学
背景情况:
- 已知纳米封闭可以稳定蛋白质和DNA的二次结构,
- 在纳米限制下,常见的B-DNA双重体的行为在很大程度上仍未被探索.
研究的目的:
- 在DNA原形纳米腔内研究B-DNA双重头针的折叠和展开过渡.
- 在自由溶液和纳米封闭环境中比较DNA针头的机械和热力学稳定性.
主要方法:
- 用了一个17bp的DNA复合在一个针头茎配置.
- 采用15 × 15纳米横截面的DNA原形纳米腔进行封闭.
- 分析了折叠/展开过渡和自由能量配置文件.
主要成果:
- 在纳米腔内,DNA发针稳定性显著下降 (机械: 20 → 9 pN;热力学: 25 → 6 kcal/mol).
- 解锁的激活能量大大降低 (28 → 8 kcal/mol),过渡状态更接近展开状态.
- 在支持G-四重复 (GQ) 或i-动机 (iM) 形成的DNA针中,胡格斯基配对比沃森-克里克基配对更受欢迎.
结论:
- 纳米封闭意外地削弱了B-DNA双重针的稳定性.
- 这些发现揭示了纳米通道和纳米孔中的DNA行为,
- 建议纳米限制可以在充满纳米腔的细胞环境中促进非正规DNA结构的B-DNA.
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