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Science 6 December 1991: Vol. 254. no. 5037, pp. 1497 - 1500 DOI: 10.1126/science.1962210
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Articles
Science, Vol 254, Issue 5037, 1497-1500
Copyright © 1991 by American Association for the Advancement of Science
Sequence-selective recognition of DNA by strand displacement with a thymine-substituted polyamide
PE Nielsen,
M Egholm,
RH Berg,
and
O Buchardt
Department of Biochemistry B, Panum Institute, Copenhagen, Denmark.
A polyamide nucleic acid (PNA) was designed by detaching the deoxyribose phosphate backbone of DNA in a computer model and replacing it with an achiral polyamide backbone. On the basis of this model, oligomers consisting of thymine-linked aminoethylglycyl units were prepared. These oligomers recognize their complementary target in double-stranded DNA by strand displacement. The displacement is made possible by the extraordinarily high stability of the PNA-DNA hybrids. The results show that the backbone of DNA can be replaced by a polyamide, with the resulting oligomer retaining base-specific hybridization.
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- In Situ Hybridization of Prochlorococcus and Synechococcus (Marine Cyanobacteria) spp. with rRNA-Targeted Peptide Nucleic Acid Probes.
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- Inhibition of human telomerase in immortal human cells leads to progressive telomere shortening and cell death.
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PNAS
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PNAS
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- Fluorescence In Situ Hybridization Assay Using Peptide Nucleic Acid Probes for Differentiation between Tuberculous and Nontuberculous Mycobacterium Species in Smears of Mycobacterium Cultures.
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