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Chemical modification of nucleic acids toward functional nucleic acid systems SCIE SCOPUS KCI

Title
Chemical modification of nucleic acids toward functional nucleic acid systems
Authors
Venkatesan, NSeo, YJBang, EKPark, SMLee, YSKim, BH
Date Issued
2006-05-20
Publisher
KOREAN CHEMICAL SOC
Abstract
Nucleic acids are virtually omnipresent; they exist in every living being. These macromolecules constitute the most important genetic storage material: the genes. Genes are conserved throughout the evolution of all living beings; they are transmitted from the parents to their offspring. Many interdisciplinary research groups are interested in modifying nucleic acids for use in a wider variety of applications. These modified oligonucleotides are used in many diverse fields, including diagnostics, detection, and therapeutics. In this account, we summarize our research efforts related to modified nucleic acid systems. First, we discuss our syntheses of modified oligonucleotides containing fluorescent tags for use as molecular probes (molecular beacons) to detect single-nucleotide polymorphisim (SNP) in nucleic acids and to distinguish between the B and Z forms of DNA. We also describe our research efforts into oligonucleotides functionalized with steroid derivatives to enhance their cell permeability, and the synthesis of several calix[4]arene-oligonucleotide conjugates possessing the ability to form defined triplexes. In addition, we have performed systematic studies to have an understanding about the functional groups necessary for a given nucleoside to behave as an organo or hydrogelator. The aggregation properties of a number of nucleoside-based phospholipids have been examined in different solvents; some of these derivatives are potential candidates for use as nucleoside-based liposomes. Finally, we also describe our research efforts toward the preparation of isoxazole- and isoxazoline-containing nucleoside derivatives and the determination of their antiviral activities.
Keywords
nucleoside; nucleotide; oligonucleotide; nucleic acid; IMMUNODEFICIENCY-VIRUS TYPE-1; SOL-GEL TRANSCRIPTION; HETEROCYCLIC NUCLEOSIDE ANALOGS; PHOSPHORAMIDITE BUILDING-BLOCKS; L-LYSINE DERIVATIVES; MODIFIED OLIGONUCLEOTIDES; ANTISENSE OLIGONUCLEOTIDES; SILICA STRUCTURES; ELECTRON-TRANSFER; BINDING-AFFINITY
URI
https://oasis.postech.ac.kr/handle/2014.oak/23983
DOI
10.5012/bkcs.2006.27.5.613
ISSN
0253-2964
Article Type
Article
Citation
BULLETIN OF THE KOREAN CHEMICAL SOCIETY, vol. 27, no. 5, page. 613 - 630, 2006-05-20
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김병현KIM, BYEANG HYEAN
Div of Advanced Materials Science
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