Solution structure and stability of the DNA undecamer duplexes containing oxanine mismatch
Author:
Publisher
Oxford University Press (OUP)
Subject
Genetics
Link
http://academic.oup.com/nar/article-pdf/40/4/1841/16954465/gkr872.pdf
Reference56 articles.
1. Structure of an adenine-cytosine base pair in DNA and its implications for mismatch repair;Hunter;Nature,1986
2. NMR studies of A·C mismatches in DNA dodecanucleotides at acidic pH. Wobble A( anti ).C( anti ) pair formation;Gao;J. Biol. Chem.,1987
3. Deoxyadenosine·deoxycytidine pairing in the d(C-G-C-G-A-A-T-T-C-A-C-G) duplex: conformation and dynamics at and adjacent to the dA·dC mismatch site;Patel;Biochemistry,1984
4. DNA structure in which an adenine-cytosine mismatch pair forms an integral part of the double helix;Sarma;Biochemistry,1987
5. NMR solution structure of a DNA dodecamer containing single G·T mismatches;Allawi;Nucleic Acids Res.,1998
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1. Nucleobase-involved native chemical ligation: a novel reaction between an oxanine nucleobase and N-terminal cysteine for oligonucleotide–peptide conjugation;Chemical Communications;2020
2. Novel enzymatic single-nucleotide modification of DNA oligomer: prevention of incessant incorporation of nucleotidyl transferase by ribonucleotide-borate complex;Nucleic Acids Research;2019-07-18
3. Highly-efficient T4 DNA ligase-based SNP analysis using a ligation fragment containing a modified nucleobase at the end;Chemical Communications;2015
4. Chapter 5. Nucleotides and nucleic acids; oligo- and poly-nucleotides;Organophosphorus Chemistry;2014
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