Improved Triplex‐Forming Isoorotamide PNA Nucleobases for A−U Recognition of RNA Duplexes**

Author:

Talbott John M.1ORCID,Tessier Brandon R.2ORCID,Harding Emily E.1,Walby Grant D.1ORCID,Hess Kyle J.1,Baskevics Vladislavs3ORCID,Katkevics Martins3ORCID,Rozners Eriks2ORCID,MacKay James A.1ORCID

Affiliation:

1. Department of Chemistry and Biochemistry Elizabethtown College Elizabethtown PA 17022 USA

2. Department of Chemistry Binghamton University Binghamton NY 13902 USA

3. Latvian Institute of Organic Synthesis Aizkraukles 21 Riga LV-1006 Latvia

Abstract

AbstractFour new isoorotamide (Io)‐containing PNA nucleobases have been designed for A−U recognition of double helical RNA. New PNA monomers were prepared efficiently and incorporated into PNA nonamers for binding A−U in a PNA:RNA2 triplex. Isothermal titration calorimetry and UV thermal melting experiments revealed slightly improved binding affinity for singly modified PNA compared to known A‐binding nucleobases. Molecular dynamics simulations provided further insights into binding of Io bases in the triple helix. Together, the data revealed interesting insights into binding modes including the notion that three Hoogsteen hydrogen bonds are unnecessary for strong selective binding of an extended nucleobase. Cationic monomer Io8 additionally gave the highest affinity observed for an A‐binding nucleobase to date. These results will help inform future nucleobase design toward the goal of recognizing any sequence of double helical RNA.

Funder

Directorate for Mathematical and Physical Sciences

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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