RECOGNITION OF ALTERNATING OLIGOPURINE OLIGOPYRIMIDINE TRACTS OF DNA BY OLIGONUCLEOTIDES WITH BASE-TO-BASE LINKAGES

被引:35
作者
ZHOU, BW
MARCHAND, C
ASSELINE, U
THUONG, NT
SUN, JS
GARESTIER, T
HELENE, C
机构
[1] MUSEUM NATL HIST NAT,CNRS,URA 481,INSERM,U201,BIOPHYS LAB,F-75231 PARIS 05,FRANCE
[2] CNRS,CTR BIOPHYS MOLEC,F-45071 ORLEANS 02,FRANCE
关键词
D O I
10.1021/bc00035a003
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A new concept is presented to design and synthesize modified oligonucleotides in order to extend the range of double-helical DNA sequences that can be recognized by oligonucleotides via triple helix formation. The DNA target is composed of adjacent oligopurine oligopyrimidine domains where the oligopurine sequences alternate on the two DNA strands. Canonical (C,T)-motif triple helices are formed with each oligopurine . oligopyrimidine domain of the target sequence. The two third-strand oligonucleotides were joined together via an appropriate linker between the two terminal bases with either a 3'-3' or a 5'-5' polarity. Molecular modeling was used to predict the optimal length of the linker bridging two terminal bases. The interaction of DNA with such a modified oligonucleotide containing a C-3-U-3 linkage was studied by thermal dissociation, footprinting, and gel retardation experiments. They provide experimental evidence that the oligonucleotide does form a switched triple helix on this extended DNA target sequence. The binding of the so-called ''switch oligonucleotide'' is enhanced as compared to the two unlinked parental oligonucleotides which form triple helices with each oligopurine oligopyrimidine domain of the target sequence.
引用
收藏
页码:516 / 523
页数:8
相关论文
共 39 条
[21]   PROTON NUCLEAR-MAGNETIC-RESONANCE ASSIGNMENTS AND STRUCTURAL CHARACTERIZATION OF AN INTRAMOLECULAR DNA TRIPLEX [J].
MACAYA, R ;
WANG, E ;
SCHULTZE, P ;
SKLENAR, V ;
FEIGON, J .
JOURNAL OF MOLECULAR BIOLOGY, 1992, 225 (03) :755-773
[22]   SUGAR CONFORMATIONS IN INTRAMOLECULAR DNA TRIPLEXES DETERMINED BY COUPLING-CONSTANTS OBTAINED BY AUTOMATED SIMULATION OF P.COSY CROSS PEAKS [J].
MACAYA, RF ;
SCHULTZE, P ;
FEIGON, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (02) :781-783
[23]   INHIBITION OF DNA-BINDING PROTEINS BY OLIGONUCLEOTIDE-DIRECTED TRIPLE HELIX FORMATION [J].
MAHER, LJ ;
WOLD, B ;
DERVAN, PB .
SCIENCE, 1989, 245 (4919) :725-730
[24]   SEQUENCE SPECIFICITY IN TRIPLE-HELIX FORMATION - EXPERIMENTAL AND THEORETICAL-STUDIES OF THE EFFECT OF MISMATCHES ON TRIPLEX STABILITY [J].
MERGNY, JL ;
SUN, JS ;
ROUGEE, M ;
MONTENAYGARESTIER, T ;
BARCELO, F ;
CHOMILIER, J ;
HELENE, C .
BIOCHEMISTRY, 1991, 30 (40) :9791-9798
[25]   AN ANTI-PARALLEL TRIPLE HELIX MOTIF WITH OLIGODEOXYNUCLEOTIDES CONTAINING 2'-DEOXYGUANOSINE AND 7-DEAZA-2'-DEOXYXANTHOSINE [J].
MILLIGAN, JF ;
KRAWCZYK, SH ;
WADWANI, S ;
MATTEUCCI, MD .
NUCLEIC ACIDS RESEARCH, 1993, 21 (02) :327-333
[26]   SEQUENCE-SPECIFIC CLEAVAGE OF DOUBLE HELICAL DNA BY TRIPLE HELIX FORMATION [J].
MOSER, HE ;
DERVAN, PB .
SCIENCE, 1987, 238 (4827) :645-650
[27]   DNA TRIPLEX FORMATION OF OLIGONUCLEOTIDE ANALOGS CONSISTING OF LINKER GROUPS AND OCTAMER SEGMENTS THAT HAVE OPPOSITE SUGAR PHOSPHATE BACKBONE POLARITIES [J].
ONO, A ;
CHEN, CN ;
KAN, LS .
BIOCHEMISTRY, 1991, 30 (41) :9914-9921
[28]   A POSSIBLE FAMILY OF B-LIKE TRIPLE HELIX STRUCTURES - COMPARISON WITH THE ARNOTT A-LIKE TRIPLE HELIX [J].
OUALI, M ;
LETELLIER, R ;
ADNET, F ;
LIQUIER, J ;
SUN, JS ;
LAVERY, R ;
TAILLANDIER, E .
BIOCHEMISTRY, 1993, 32 (08) :2098-2103
[29]   SOLUTION CONFORMATION OF A G-BULLET-TA TRIPLE IN AN INTRAMOLECULAR PYRIMIDINE-BULLET-PURINE-BULLET-PYRIMIDINE DNA TRIPLEX [J].
RADHAKRISHNAN, I ;
PATEL, DJ ;
VEAL, JM ;
GAO, XL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (17) :6913-6915
[30]   SOLUTION STRUCTURE OF A PURINE PURINE PYRIMIDINE DNA TRIPLER CONTAINING G-CENTER-DOT-GC AND T-CENTER-DOT-AT TRIPLES [J].
RADHAKRISHNAN, I ;
PATEL, DJ .
STRUCTURE, 1993, 1 (02) :135-152