4.8 Review

Aptamer-Protein Interactions: From Regulation to Biomolecular Detection

Journal

CHEMICAL REVIEWS
Volume 123, Issue 22, Pages 12471-12506

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.chemrev.3c00377

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Aptamers, single-stranded oligonucleotides generated by in vitro evolution, have the ability to interact specifically with proteins. Modulating the structure of aptamers can significantly affect their protein interactions and related cellular behaviors. Analytical assays based on aptamer-protein interactions have been widely developed as a powerful tool for biomolecular detection. This review comprehensively introduces methods for regulating aptamer-protein interactions, elaborates on detection techniques for analyzing such interactions, and summarizes the analytical assays based on the regulation of aptamer-protein interactions for detecting biomolecules.
Serving as the basis of cell life, interactions between nucleic acids and proteins play essential roles in fundamental cellular processes. Aptamers are unique single-stranded oligonucleotides generated by in vitro evolution methods, possessing the ability to interact with proteins specifically. Altering the structure of aptamers will largely modulate their interactions with proteins and further affect related cellular behaviors. Recently, with the in-depth research of aptamer-protein interactions, the analytical assays based on their interactions have been widely developed and become a powerful tool for biomolecular detection. There are some insightful reviews on aptamers applied in protein detection, while few systematic discussions are from the perspective of regulating aptamer-protein interactions. Herein, we comprehensively introduce the methods for regulating aptamer-protein interactions and elaborate on the detection techniques for analyzing aptamer-protein interactions. Additionally, this review provides a broad summary of analytical assays based on the regulation of aptamer-protein interactions for detecting biomolecules. Finally, we present our perspectives regarding the opportunities and challenges of analytical assays for biological analysis, aiming to provide guidance for disease mechanism research and drug discovery.

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