Literature DB >> 21793587

Design of aptamer-based sensing platform using triple-helix molecular switch.

Jing Zheng1, Jishan Li, Ying Jiang, Jianyu Jin, Kemin Wang, Ronghua Yang, Weihong Tan.   

Abstract

For successful assay development of an aptamer-based biosensor, various design principles and strategies, including a highly selective molecular recognition element and a novel signal transduction mechanism, have to be engineered together. Herein, we report a new type of aptamer-based sensing platform which is based on a triple-helix molecular switch (THMS). The THMS consists of a central, target specific aptamer sequence flanked by two arm segments and a dual-labeled oligonucleotide serving as a signal transduction probe (STP). The STP is doubly labeled with pyrene at the 5'- and 3'-end, respectively, and initially designed as a hairpin-shaped structure, thus, bringing the two pyrenes into spacer proximity. Bindings of two arm segments of the aptamer with the loop sequence of STP enforce the STP to form an "open" configuration. Formation of aptamer/target complex releases the STP, leading to new signal readout. To demonstrate the feasibility and universality of our design, three aptamers which bind to human α-thrombin (Tmb), adenosine triphosphate (ATP), and L-argininamide (L-Arm), respectively, were selected as models. The universality of the approach is achieved by virtue of altering the aptamer sequence without change of the triple-helix structure.

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Year:  2011        PMID: 21793587     DOI: 10.1021/ac201314y

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  13 in total

1.  A ratiometric electrochemical aptasensor for ultrasensitive determination of adenosine triphosphate via a triple-helix molecular switch.

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Journal:  Mikrochim Acta       Date:  2019-06-27       Impact factor: 5.833

Review 2.  Rationally designed molecular beacons for bioanalytical and biomedical applications.

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Review 3.  Applications of triplex DNA nanostructures in sensor development.

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Journal:  Anal Bioanal Chem       Date:  2022-04-25       Impact factor: 4.142

4.  In vitro selection of DNA aptamers for the development of chemiluminescence aptasensor for neuron-specific enolase (NSE) detection.

Authors:  Yue Zheng; Yunwang Zhao; Ya Di; Lei He; Shiqi Liao; Dongdong Li; Xiaofei Liu
Journal:  RSC Adv       Date:  2019-05-17       Impact factor: 4.036

5.  Oligonucleotide-Based Systems for Input-Controlled and Non-Covalently Regulated Protein-Binding.

Authors:  Cooper Battle; Xiaozhu Chu; Janarthanan Jayawickramarajah
Journal:  Supramol Chem       Date:  2013-01-01       Impact factor: 1.688

6.  Fabricating a reversible and regenerable Raman-active substrate with a biomolecule-controlled DNA nanomachine.

Authors:  Jing Zheng; Anli Jiao; Ronghua Yang; Huimin Li; Jishan Li; Muling Shi; Cheng Ma; Ying Jiang; Li Deng; Weihong Tan
Journal:  J Am Chem Soc       Date:  2012-12-03       Impact factor: 15.419

7.  Switchable electrochemical aptasensor for amyloid-β oligomers detection based on triple helix switch coupling with AuNPs@CuMOF labeled signaling displaced-probe.

Authors:  Xiaoying Wang; Linyu Li; Xuan Gu; Bingjia Yu; Meng Jiang
Journal:  Mikrochim Acta       Date:  2021-01-25       Impact factor: 5.833

Review 8.  Functional Nucleic Acid Nanomaterials: Development, Properties, and Applications.

Authors:  Wentao Xu; Wanchong He; Zaihui Du; Liye Zhu; Kunlun Huang; Yi Lu; Yunbo Luo
Journal:  Angew Chem Int Ed Engl       Date:  2020-08-25       Impact factor: 16.823

9.  General Strategy to Introduce pH-Induced Allostery in DNA-Based Receptors to Achieve Controlled Release of Ligands.

Authors:  Alessandro Porchetta; Andrea Idili; Alexis Vallée-Bélisle; Francesco Ricci
Journal:  Nano Lett       Date:  2015-06-10       Impact factor: 11.189

10.  Controllable Molecule Transport and Release by a Restorable Surface-tethered DNA nanodevice.

Authors:  Zhaoyin Wang; Yuanyuan Xu; Haiyan Wang; Fengzhen Liu; Zhenning Ren; Zhaoxia Wang
Journal:  Sci Rep       Date:  2016-07-07       Impact factor: 4.379

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