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Combinatorial selection of a single stranded DNA thioaptamer targeting TGF-beta1 protein.


ABSTRACT: A phosphorothioate single-stranded DNA aptamer (thioaptamer) targeting transforming growth factor-beta1 (TGF-beta1) was isolated by in-vitro combinatorial selection. The aptamer selection procedure was designed to modify the backbone of single-stranded DNA aptamers, where 5' of both A and C are phosphorothioates, since this provides enhanced nuclease resistance as well as higher affinity than that of a phosphate counterpart. The thioaptamer selected from a combinatorial library (5x10(14) sequences) binds to TGF-beta1 protein with an affinity of 90 nM. In this report, sequence, predicted secondary structure, and binding affinity of the selected thioaptamer (T18_1_3) are presented.

SUBMITTER: Kang J 

PROVIDER: S-EPMC2323357 | biostudies-literature | 2008 Mar

REPOSITORIES: biostudies-literature

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Combinatorial selection of a single stranded DNA thioaptamer targeting TGF-beta1 protein.

Kang Jonghoon J   Lee Myung Soog MS   Copland John A JA   Luxon Bruce A BA   Gorenstein David G DG  

Bioorganic & medicinal chemistry letters 20080213 6


A phosphorothioate single-stranded DNA aptamer (thioaptamer) targeting transforming growth factor-beta1 (TGF-beta1) was isolated by in-vitro combinatorial selection. The aptamer selection procedure was designed to modify the backbone of single-stranded DNA aptamers, where 5' of both A and C are phosphorothioates, since this provides enhanced nuclease resistance as well as higher affinity than that of a phosphate counterpart. The thioaptamer selected from a combinatorial library (5x10(14) sequenc  ...[more]

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