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Volumn 12, Issue 6, 2004, Pages 1517-1526

Synthesis and duplex DNA recognition studies of oligonucleotides containing a ureido isoindolin-1-one homo-N-nucleoside. A comparison of host-guest and DNA recognition studies

Author keywords

DNA Recognition; Nucleoside; Triplex DNA

Indexed keywords

CHLOROFORM; CYTOSINE; DOUBLE STRANDED DNA; GUANINE; HYDROGEN; NUCLEOSIDE; OLIGONUCLEOTIDE;

EID: 1542331584     PISSN: 09680896     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.bmc.2003.12.022     Document Type: Article
Times cited : (28)

References (48)
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    • It should be noted that natural guanosine residues were found to recognize the TA base pair in the pyr-pur-pyr triple helix motif:
    • It should be noted that natural guanosine residues were found to recognize the TA base pair in the pyr-pur-pyr triple helix motif: Griffin L.C., Dervan P.B. Science. 245:1989;967.
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    • Complexation of a 4-amino phthalimide base with CG was also studied in:
    • Complexation of a 4-amino phthalimide base with CG was also studied in: Lengeler D., Weisz K. Tetrahedron Lett. 42:2001;1479.
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    • Molecular models of triplex DNA were generated using (a) Macromodel, version 5.0, produced by Columbia University or (b) Insight II, produced by Accelrys. (c) For each structure, a natural base was excised from a triplex structure and a minimized ureido isoindolin-1-one homo-N-nucleoside structure was placed in the resulting gap. In the case of models generated by Macromodel, coordinates were obtained through the Protein Data Bank for an NMR structure reported in
    • Molecular models of triplex DNA were generated using (a) Macromodel, version 5.0, produced by Columbia University or (b) Insight II, produced by Accelrys. (c) For each structure, a natural base was excised from a triplex structure and a minimized ureido isoindolin-1-one homo-N-nucleoside structure was placed in the resulting gap. In the case of models generated by Macromodel, coordinates were obtained through the Protein Data Bank for an NMR structure reported in Radhakrishnan I., Patel D.J. Structure. 2:1994;17.
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    • M.J. Gait. Oxford, UK: IRL Press
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    • Alternative strategies for sequence specific DNA recognition have also been developed. Most notable is an approach involving minor groove recognition by polyamides:
    • Alternative strategies for sequence specific DNA recognition have also been developed. Most notable is an approach involving minor groove recognition by polyamides: Dervan P.B., Bürli R.W. Current Opinion in Chemical Biology. 3:1999;688.
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.