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    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/21036


    Title: Cooperative recognition of T:T mismatch by echinomycin causes structural distortions in DNA duplex
    Authors: Pei-Ching Wu;Shu-Ling Tzeng;Chung-ke Chang;Ya-Fen Kao;Michael J Waring;Ming-Hon Hou
    Contributors: 醫學研究所
    Date: 2018-04-08
    Issue Date: 2020-08-10T04:51:59Z (UTC)
    Publisher: Nucleic Acids Research
    Abstract: Abstract
    Small-molecule compounds that target mismatched base pairs in DNA offer a novel prospective for cancer diagnosis and therapy. The potent anticancer antibiotic echinomycin functions by intercalating into DNA at CpG sites. Surprisingly, we found that the drug strongly prefers to bind to consecutive CpG steps separated by a single T:T mismatch. The preference appears to result from enhanced cooperativity associated with the binding of the second echinomycin molecule. Crystallographic studies reveal that this preference originates from the staggered quinoxaline rings of the two neighboring antibiotic molecules that surround the T:T mismatch forming continuous stacking interactions within the duplex. These and other associated changes in DNA conformation allow the formation of a minor groove pocket for tight binding of the second echinomycin molecule. We also show that echinomycin displays enhanced cytotoxicity against mismatch repair-deficient cell lines, raising the possibility of repurposing the drug for detection and treatment of mismatch repair-deficient cancers.
    URI: https://ir.csmu.edu.tw:8080/ir/handle/310902500/21036
    Relation: Nucleic Acids Research, Volume 46, Issue 14, 21 August 2018, Pages 7396–7404,
    Appears in Collections:[醫學研究所] 期刊論文

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