分子机器
适体
脱氧核酶
纳米技术
DNA
DNA纳米技术
计算机科学
计算生物学
核酸
DNA折纸
A-DNA
分子识别
分子生物物理学
DNA测序
纳米生物技术
化学
生物
核酶
基序列
作者
Yirong Guo,Xiaolei Zuo,Fangfei Yin
标识
DOI:10.1002/anbr.202400206
摘要
Molecular machines, constructed from molecules with specific functions through the molecular engineering, requires the development of a general assembly strategy that is crucial for the design and fabrication molecular machines. The precise and programmable characteristics of Watson–Crick base‐pairing allow for the accurate construction of DNA nanostructures with diverse geometries. Furthermore, DNA itself exhibits various functionalities, such as DNAzymes and aptamers for identification, and unique structures like G‐quadruplexes and i‐motifs for environmental stimulus response. With the significant advancements in DNA nanotechnology, DNA is increasingly being recognized as a versatile building block for molecular machines design. In this review, a comprehensive overview of DNA nanostructures, such as 2D origami, which are subsequently assembled into molecular machines is provided. Their classification of DNA‐based molecular machines is discussed and their biological applications, such as biosensing, targeted therapy, and molecular circuits are explored. Additionally, future directions and challenges in this rapidly evolving field are outlined.
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