TRIPLE-HELIX FORMATION AND COOPERATIVE BINDING BY OLIGODEOXYNUCLEOTIDES WITH A 3'-3' INTERNUCLEOTIDE JUNCTION

被引:60
作者
FROEHLER, BC
TERHORST, T
SHAW, JP
MCCURDY, SN
机构
[1] Gilead Sciences Inc., Foster City, California, 346 Lakeside Drive
关键词
D O I
10.1021/bi00121a004
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
Triple-helix formation by oligodeoxynucleotides in a sequence-specific manner is limited to polypurine tracts of duplex DNA. To increase the number of biologically relevant targets for triple-helix formation, we have utilized oligodeoxynucleotides containing a 3'-3' internucleotide junction to allow for binding to opposite strands of duplex DNA. Molecular modeling was used to aid in the design of the xylose dinucleoside linker 1 that is rigid and minimizes the number of conformers to minimize the entropy of binding. Thermal denaturation studies show that a 3'-3'-linked oligodeoxynucleotide, bearing nine nucleotides on each side of the linker, has a higher T(m) (47.6-degrees-C) than that of a 21-mer binding to a single polypurine tract (45.3-degrees-C). Binding domain minimization studies and sequence-specific alkylation of a target duplex demonstrate a high degree of cooperativity between the two triple-helix binding domains, thus allowing for an increase in the number of biologically relevant targets for triple-helix formation.
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页码:1603 / 1609
页数:7
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