静电学
DNA
核酸
静电
化学
化学物理
纳米技术
航程(航空)
DNA–DNA杂交
核酸热力学
生物物理学
合理设计
材料科学
生物化学
物理
生物
物理化学
量子力学
复合材料
基序列
作者
Zhibei Qu,Yinan Zhang,Zheze Dai,Yaya Hao,Yichi Zhang,Jianlei Shen,Fei Wang,Qian Li,Chunhai Fan,Xiaoguo Liu
标识
DOI:10.1002/anie.202106010
摘要
Abstract Long‐range electrostatic interactions beyond biomolecular interaction interfaces have not been extensively studied due to the limitation in engineering electric double layers in physiological fluids. Here we find that long‐range electrostatic interactions play an essential role in kinetic modulation of DNA hybridizations. Protein and gold nanoparticles with different charges are encapsulated in tetrahedral frameworks to exert diverse electrostatic effects on site‐specifically tethered single DNA strands. Using this strategy, we have successfully modulated the hybridization kinetics in both bulk solution and single molecule level. Experimental and theoretical studies reveal that long‐range Coulomb interactions are the key factor for hybridization rates. This work validates the important role of long‐range electrostatic forces in nucleic acid‐biomacromolecule complexes, which may encourage new strategies of gene regulation, antisense therapy, and nucleic acid detection.
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