Self-Assembly and Lyomesophases Formed by Long-Chain Alkoxymethyl-Nucleobase Derivatives
Amphiphilic complementary nucleobase derivatives, containing n-octadecyl-oxymethyl substituents at the N 1 position of pyrimidine and N 9 of purine, dissolved in chloroform form non-specific lyotropic mesophases, which were analyzed by optical polarizing microscopy. Molecular modeling studies visual...
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Veröffentlicht in: | Nucleosides, nucleotides & nucleic acids nucleotides & nucleic acids, 2000-07, Vol.19 (7), p.1185-1191 |
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creator | Meister, W. V. Lindau, S. Bohley, C. Gromann, U. Madre, M. Kovalenko, L. Bischoff, G. Zhuk, R. Hoffmann, S. |
description | Amphiphilic complementary nucleobase derivatives, containing n-octadecyl-oxymethyl substituents at the N
1
position of pyrimidine and N
9
of purine, dissolved in chloroform form non-specific lyotropic mesophases, which were analyzed by optical polarizing microscopy. Molecular modeling studies visualize hypothetical horizontal and vertical nucleobase hydrogen-bonding and stacking arrangements, as well as aliphatic long-chain interstrand interaction. |
doi_str_mv | 10.1080/15257770008035039 |
format | Article |
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1
position of pyrimidine and N
9
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1
position of pyrimidine and N
9
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1
position of pyrimidine and N
9
of purine, dissolved in chloroform form non-specific lyotropic mesophases, which were analyzed by optical polarizing microscopy. Molecular modeling studies visualize hypothetical horizontal and vertical nucleobase hydrogen-bonding and stacking arrangements, as well as aliphatic long-chain interstrand interaction.</abstract><cop>United States</cop><pub>Taylor & Francis Group</pub><pmid>10999256</pmid><doi>10.1080/15257770008035039</doi><tpages>7</tpages></addata></record> |
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language | eng |
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source | MEDLINE; Taylor & Francis Journals Complete |
subjects | Chloroform - chemistry DNA - chemical synthesis DNA - chemistry Hydrogen Bonding Microscopy, Polarization Models, Molecular Nucleic Acid Conformation Nucleosides - chemical synthesis |
title | Self-Assembly and Lyomesophases Formed by Long-Chain Alkoxymethyl-Nucleobase Derivatives |
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