4.7 Review

Structural Biology for the Molecular Insight between Aptamers and Target Proteins

Journal

Publisher

MDPI
DOI: 10.3390/ijms22084093

Keywords

aptamer; structure; interaction feature; binding affinity; modification strategy

Funding

  1. Hong Kong General Research Fund from the Research Grants Council of the Hong Kong Special Administrative Region, China [12102120]
  2. Theme-Based Research Scheme from the Research Grants Council of the Hong Kong Special Administrative Region, China [T12-201/20-R]
  3. Basic and Applied Basic Research Fund from Department of Science and Technology of Guangdong Province [2019B1515120089]
  4. Inter-Institutional Collaborative Research Scheme from Hong Kong Baptist University [RC-ICRS/19-20/01]

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Aptamers show promise as therapeutic and diagnostic agents for various diseases due to their high affinity and specificity. Structural studies and modification strategies are crucial for understanding and optimizing the interactions between aptamers and target proteins. Challenges in resolving aptamer-protein complex structures still exist, but advancements in methodologies could facilitate the development of aptamer-based therapeutics.
Aptamers are promising therapeutic and diagnostic agents for various diseases due to their high affinity and specificity against target proteins. Structural determination in combination with multiple biochemical and biophysical methods could help to explore the interacting mechanism between aptamers and their targets. Regrettably, structural studies for aptamer-target interactions are still the bottleneck in this field, which are facing various difficulties. In this review, we first reviewed the methods for resolving structures of aptamer-protein complexes and for analyzing the interactions between aptamers and target proteins. We summarized the general features of the interacting nucleotides and residues involved in the interactions between aptamers and proteins. Challenges and perspectives in current methodologies were discussed. Approaches for determining the binding affinity between aptamers and target proteins as well as modification strategies for stabilizing the binding affinity of aptamers to target proteins were also reviewed. The review could help to understand how aptamers interact with their targets and how alterations such as chemical modifications in the structures affect the affinity and function of aptamers, which could facilitate the optimization and translation of aptamers-based theranostics.

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