A versatile strategy for convenient circular bivalent functional nucleic acids construction

Author:

Zhang Xiao-Jing1,Zhao Zhuo1,Wang Xia1,Su Min-Hui1,Ai Lili1,Li Yingying1,Yuan Quan1ORCID,Wang Xue-Qiang1ORCID,Tan Weihong123

Affiliation:

1. Molecular Science and Biomedicine Laboratory (MBL), State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, College of Biology, Aptamer Engineering Center of Hunan Province, Hunan University , Changsha 410082 , China

2. Institute of Molecular Medicine (IMM), Renji Hospital, Shanghai Jiao Tong University School of Medicine, and College of Chemistry and Chemical Engineering, Shanghai Jiao Tong University , Shanghai 200240 , China

3. The Cancer Hospital of the University of Chinese Academy of Sciences (Zhejiang Cancer Hospital), Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences , Hangzhou 310022 , China

Abstract

ABSTRACT Functional nucleic acids (FNAs), such as aptamers, nucleic acid enzymes and riboswitches play essential roles in various fields of life sciences. Tailoring of ingenious chemical moieties toward FNAs can enhance their biomedical properties and/or confer them with exogenic biological functions that, in turn, can considerably expand their biomedical applications, or even improve their clinical translations. Herein, we report the first example of a general chemical tailoring strategy that enables the divergent ligation of DNA sequences. By applying this technology, different types of aptamers and single-stranded nucleic acids of various lengths could be efficiently tailored to deliver the designed circular bivalent aptamers (CBApts) and cyclized DNA sequences with high yields. It is worth noting that CBApts exhibited significantly enhanced nuclease resistance, as well as considerably improved binding, targeting and tumor tissue enrichment abilities, which may pave the way for different investigations for biomedical purposes.

Funder

National Key Research and Development Program of China

Huxiang Young Talent Program from Hunan Province

the Science and Technology Project of Hunan Province

Publisher

Oxford University Press (OUP)

Subject

Multidisciplinary

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