COOPERATIVE TRIPLE-HELIX FORMATION AT ADJACENT DNA SITES - SEQUENCE COMPOSITION DEPENDENCE AT THE JUNCTION

被引:20
|
作者
COLOCCI, N [1 ]
DERVAN, PB [1 ]
机构
[1] CALTECH,DIV CHEM & CHEM ENGN,PASADENA,CA 91125
关键词
D O I
10.1021/ja00122a007
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The energetics of cooperative binding by oligodeoxyribonucleotides to adjacent sites by triple helix formation have been determined as a function of sequence composition at the junction. The binding affinity of an 11-mer in the presence of a neighboring bound oligonucleotide is enhanced by factors of 12, 17, 61, and 127 when 5'-TT-3', 5'-(CC)-C-m-C-m-3', 5'-(TC)-C-m-3', and 5'-(CT)-C-m-3' stacks, respectively, are formed at the junction (10 mM Bis-Tris . HCl at pH 7.0, 10 mM NaCl, 250 mu M spermine, 24 degrees C). These binding enhancements correspond to interaction energies between the two oligonucleotides of 1.5, 1.7, 2.5, and 2.9 kcal . mol(-1), respectively. The energetic penalties for a single-base mismatch differ depending on sequence and the location of the mismatch with respect to the 5'- or 3'-side of the junction. In the case of a 5'-TT-3' stack, a T . GC mismatch on the 5'-side of the junction decreases the interaction energy from 1.5 to 0.6 kcal . mol(-1), whereas a T . GC mismatch on the 3'-side destroys cooperativity. For a 5'-(CT)-C-m-3' stack, a C-m . AT mismatch on the 5'-side of the junction decreases the cooperative interaction energy from 2.9 to 1.7 kcal . mol(-1), whereas a T . GC mismatch on the 3'-side of the junction destroys cooperativity. Two 11-mer oligonucleotides interacting through a 5'-TT-3' stack binding to adjacent sites on DNA are significantly more sensitive to single-base mismatches than the corresponding 22-mer binding to the same two abutting sites.
引用
收藏
页码:4781 / 4787
页数:7
相关论文
共 50 条
  • [41] OLIGONUCLEOTIDE-DIRECTED TRIPLE-HELIX FORMATION
    SUN, JS
    HELENE, C
    [J]. CURRENT OPINION IN STRUCTURAL BIOLOGY, 1993, 3 (03) : 345 - 356
  • [42] NONENZYMATIC LIGATION OF OLIGODEOXYRIBONUCLEOTIDES ON A DUPLEX DNA-TEMPLATE BY TRIPLE-HELIX FORMATION
    LUEBKE, KJ
    DERVAN, PB
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1989, 111 (23) : 8733 - 8735
  • [43] KINETIC-ANALYSIS OF OLIGODEOXYRIBONUCLEOTIDE-DIRECTED TRIPLE-HELIX FORMATION ON DNA
    MAHER, LJ
    DERVAN, PB
    WOLD, BJ
    [J]. BIOCHEMISTRY, 1990, 29 (37) : 8820 - 8826
  • [44] OLIGODEOXYRIBONUCLEOTIDE LENGTH AND SEQUENCE EFFECTS ON INTERMOLECULAR PURINE - PURINE - PYRIMIDINE TRIPLE-HELIX FORMATION
    CHENG, AJ
    VANDYKE, MW
    [J]. NUCLEIC ACIDS RESEARCH, 1994, 22 (22) : 4742 - 4747
  • [45] INTERACTION OF HOECHST-33258 WITH A DNA TRIPLE-HELIX
    DURAND, M
    THUONG, NT
    MAURIZOT, JC
    [J]. BIOCHIMIE, 1994, 76 (02) : 181 - 186
  • [46] DOUBLE-STRAND CLEAVAGE OF GENOMIC DNA AT A SINGLE SITE BY TRIPLE-HELIX FORMATION
    STROBEL, SA
    MOSER, HE
    DERVAN, PB
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (23) : 7927 - 7929
  • [47] Second structural motif for recognition of DNA by oligonucleotide-directed triple-helix formation
    Beal, P.A.
    Dervan, P.B.
    [J]. Science, 1991, 251 (4999)
  • [48] PHOSPHOROTHIOATE OLIGONUCLEOTIDE-DIRECTED TRIPLE-HELIX FORMATION
    HACIA, JG
    WOLD, BJ
    DERVAN, PB
    [J]. BIOCHEMISTRY, 1994, 33 (18) : 5367 - 5369
  • [49] Triple-helix polysaccharides: Formation mechanisms and analytical methods
    Guo, Xiaoyu
    Kang, Ji
    Xu, Zhiyuan
    Guo, Qingbin
    Zhang, Lifeng
    Ning, Haifeng
    Cui, Steve W.
    [J]. CARBOHYDRATE POLYMERS, 2021, 262
  • [50] DNA triple-helix formation on nucleosome core particles - Effect of length of the oligopurine tract
    Brown, PM
    Fox, KR
    [J]. EUROPEAN JOURNAL OF BIOCHEMISTRY, 1999, 261 (01): : 301 - 310