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Hoogsteen base-pairing revisited: Resolving a role in normal biological processes and human diseases

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ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2006.02.148

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Hoogsteen base-pairing; DNA transactions; G-qadruplexes; RecQ helicases; triplexes; genetic diseases

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For a long time since the discovery of all alternative type of hydrogen bonding between adenine and thymidine, termed Hoogsteen base-pairing, its biological role remained elusive. Recent experiments provide compelling evidence that Hoogsteen base pairs manifest ill a gamut of nuclear processes encompassing gene expression, replication, recombination, and telomere length maintenance. All increasing number of proteins that have been shown to bind, unwind or cleave G-quadruplexes or triplexes with high specificity underscore their biological significance. In humans, the absence of these cellular factors or their dysfunction leads to a wide spectrum of genetic diseases including cancer, neurodegenerative syndromes, and a myriad of other disorders. Thus, development of clinically useful compounds that target G-quadruplexes or triplexes, and interfere with specific cellular processes, provides considerable promise for successful and improved treatment of human diseases. (c) 2006 Elsevier Inc. All rights reserved.

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