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在多重分散的拥挤环境中,刚性DNA的意外膨胀
Hongsuk Kang, Ngo Minh Toan, Changbong Hyeon1
1Korea Institute for Advanced Study , Seoul 130-722, Korea.
Journal of the American Chemical Society
|August 13, 2015
概括
在拥挤的细胞环境中,类似DNA的刚性链表现出复杂的形状变化. 不同的形和混合物会导致不同程度的紧缩,细胞状的条件会因聚合物捕获而导致意想不到的胀.
科学领域:
- 生物物理
- 聚合物物理
- 细胞生物学
背景情况:
- 细胞环境充满了宏分子,影响了聚合物行为.
- 对于生物过程来说,了解聚合物构成是非常重要的.
研究的目的:
- 在各种拥挤条件下研究类似DNA的刚性链的结构变化.
- 阐明不同类型的聚合物 (球形,圆柱形,混合物和细胞溶液模拟物) 对聚合物尺寸和形状的影响.
主要方法:
- 模拟各种拥挤环境中的刚性聚合物链.
- 聚合物大小 (旋转半径) 和持久度的分析.
- 单分散式,混合式和多分散式挤压系统的结果比较.
主要成果:
- 柔软的球形挤压器会导致适度的增大;球形圆柱形挤压器会导致更大的压缩.
- 混凝土的混合会导致非添加的压缩效应.
- 由于在波动的环境中陷入困境,细胞溶液模仿会意外地使硬链膨胀,与柔性聚合物不同.
结论:
- 聚合物形状,尺寸分布和混合物组成显著影响了刚性聚合物构造.
- 细胞模拟中的DNA/RNA大小取决于轮长度与持续长度比 (L/lp).
- 结果为体内RNA行为提供了洞察力,并预测了不同拥挤场景中的反应.
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