SITE-SPECIFIC INTERCALATION AT THE TRIPLEX-DUPLEX JUNCTION INDUCES A CONFORMATIONAL CHANGE WHICH IS DETECTABLE BY HYPERSENSITIVITY TO DIETHYLPYROCARBONATE

被引:64
作者
COLLIER, DA [1 ]
MERGNY, JL [1 ]
THUONG, NT [1 ]
HELENE, C [1 ]
机构
[1] CTR BIOPHYS MOLEC, F-45071 ORLEANS 02, FRANCE
关键词
D O I
10.1093/nar/19.15.4219
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Using site-specific intercalation directed by intermolecular triplex formation, the conformation of an intercalation site in DNA was examined by footprinting with the purine-specific (A > > G) reagent diethylpyrocarbonate. Site specific intercalation was achieved by covalently linking an intercalator to the 5' end of a homopyrimidine oligodeoxynucleotide, which bound to a homopurinehomopyrimidine stretch in a recombinant plasmid via intermolecular triplex formation. This directs intercalation to a single site in 3kb of DNA at the 5' triplex-duplex junction. Footprinting with diethylpyrocarbonate and dimethylsulphate revealed strong protection from modification of adenine residues within the triple-helix in concordance with their Hoogsteen pairing with the third strand, and a strong hypersensitivity to diethylpyrocarbonate at the first adenine of the duplex. This result indicates that intercalation at this site induces a conformational change at the 5' triplex-duplex junction. Furthermore, the same diethlypyrocarbonate hypersensitivity was observed with an unmodified triple-strand forming oligonucleotide and a range of intercalating molecules present in solution. Thus the 5' triplex-duplex junction is a strong binding site for some intercalating molecules and the junction undergoes a conformational change which is sensitive to diethylpyrocarbonate upon insertion of the planar aromatic chromophore. This conformational change can be used to direct a single-strand cut in duplex DNA to a defined site.
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页码:4219 / 4224
页数:6
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