Accelerated Screening of Alternative DNA Base‐Organic Molecule‐Base Architectures via Integrated Theory and Experiment

Author:

Feng Xinyu1,Wang Xianwen2,Liu Jiahe3,Fu Aiting1,Wang Ying1,Wei Shuheng4,Chen Huichao1,She Rui1,Wang Yangying1,Cui Xiao5,Hou Hui5,Xu Yuanyuan6,Wu Yujing1,Meng Qian1,Zhang Lingling1,Wang Song3ORCID,Zhao Jiemin1

Affiliation:

1. Institute of Clinical Pharmacology Key Laboratory of Anti-Inflammatory and Immune Medicine Ministry of Education Anhui Collaborative Innovation Center of Anti-Inflammatory and Immune Medicine Anhui Medical University Hefei Anhui 230032 China

2. School of Biomedical Engineering Research and Engineering Center of Biomedical Materials Anhui Medical University Hefei Anhui 230032 China

3. Key Laboratory of Precision and Intelligent Chemistry School of Chemistry and Materials Science University of Science and Technology of China Hefei Anhui 230026 China

4. Second Clinical Medical College Anhui Medical University Hefei Anhui 230032 China

5. Department of General Surgery The Second Hospital of Anhui Medical University Hefei Anhui 230032 China

6. Department of Pediatric Critical Care Medicine Children's Medical Center of Anhui Medical University Hefei Anhui 230051 China

Abstract

AbstractOrganic molecule‐mediated noncanonical DNA self‐assembly expands the standard DNA base‐pairing alphabets. However, only a very limited number of small molecules have been recognized as mediators because of the tedious and complicated experiments like crystallization and microscopy imaging. Here we present an integrative screening protocol incorporating molecular dynamics (MD) for fast theoretical simulation and native polyacrylamide gel electrophoresis for convenient experimental validation. Melamine, the molecule that was confirmed mediating noncanonical DNA base‐pairing, and 38 other candidate molecules were applied to demonstrate the feasibility of this protocol. We successfully identified seven stable noncanonical DNA duplex structures, and another eight novel structures with sub‐stability. In addition, we discovered that hairpins at both ends can significantly stabilize the noncanonical DNA structures, providing a guideline to design small organic molecule‐incorporated DNA structures. Such an efficient screening protocol will accelerate the design of alternative DNA‐molecule architectures beyond Watson–Crick pairs. Considering the wide range of potential mediators, it will also facilitate applications such as noncovalent, highly dense loading of drug molecules in DNA‐based delivery system and probe design for sensitive detection of certain molecules.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Anhui Province

Publisher

Wiley

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