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PMID: 8581427 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Targeting peptide nucleic acid-protein conjugates to structural features within duplex DNA.

Bioorganic & medicinal chemistry ·Vol. 3 ·No. 4 ·1995-04-00 ·Pages 437-45

Norton JC, Waggenspack JH, Varnum E, Corey DR

Abstract

A convenient small scale synthesis has been developed for obtaining peptide nucleic acid oligomers (PNAs). PNAs have been conjugated to a protein, staphylococcal nuclease, through disulfide exchange between a cysteine at the 3'-(carboxy) end of the PNA and an introduced cysteine on the surface of the nuclease. Site specific DNA cleavage by the attached nuclease has been used to examine the Watson-Crick hybridization of the PNAs to duplex DNA. Substantial affinity cleavage occurred when target sites contained inverted repeats which have the potential to form non B-DNA structures such as cruciforms. No affinity cleavage was observed at a site lacking apparent potential for non B-DNA structures. These results indicate that the Watson-Crick hybridization of PNAs to duplex DNA by strand displacement is favored by the presence of potential alternative secondary structures within the target sequence.

MeSH Terms
Base Sequence In Situ Hybridization Micrococcal Nuclease/chemistry,metabolism Molecular Sequence Data Nucleic Acid Heteroduplexes/chemistry,metabolism Nucleic Acids/chemical synthesis,isolation & purification Peptides/chemical synthesis,isolation & purification,metabolism Plasmids/metabolism Staphylococcus/enzymology
Chemicals
Nucleic Acid Heteroduplexes Nucleic Acids Peptides Micrococcal Nuclease
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Norton J C
Howard Hughes Medical Institute, Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas 75235, USA.
Waggenspack J H
Varnum E
Corey D R
Article Info
Journal
Bioorganic & medicinal chemistry
Abbr.
Bioorg Med Chem
ISSN
0968-0896
Published
1995-04-00
Pages
437-45
Language
English
Region
England
NLM ID
9413298
Subset
IM
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