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Truncation and Mutation of a Transferrin Receptor Aptamer Enhances Binding Affinity

Version 2 2024-06-04, 11:47
Version 1 2016-08-30, 14:47
journal contribution
posted on 2024-06-04, 11:47 authored by J MacDonald, P Houghton, D Xiang, Wei DuanWei Duan, Sarah ShigdarSarah Shigdar
Aptamers are proving their utility in a number of applications. However, to be easily functionalized, their structure needs to be simplified. Therefore, we sought to truncate a 50-nucleotide aptamer specific to the transferrin receptor to its smallest functional unit using rational engineering of the predicted two-dimensional structure of the longer parent sequence. In addition, mutations were introduced into the binding loop to determine their effect on the selectivity of the aptamers. These base mutations enhanced the binding affinity of the aptamer, while retaining its specificity. The equilibrium dissociation constant (Kd) was reduced sixfold following the substitution of all four bases in the binding region. In addition, these aptamers were efficiently internalized into transferrin receptor-positive cells in a similar manner to the transferrin receptor antibody and demonstrated colocalization with this antibody. This study has shown that the smallest functional unit of this aptamer was 14 nucleotides. This small size will be advantageous for future applications, such as drug delivery or functionalization of other therapeutic modalities.

History

Journal

Nucleic Acid Therapeutics

Volume

26

Pagination

348-354

Location

United States

ISSN

2159-3337

eISSN

2159-3345

Language

English

Publication classification

C Journal article, C1 Refereed article in a scholarly journal

Copyright notice

2016, Mary Ann Liebert

Issue

6

Publisher

MARY ANN LIEBERT, INC