FOOTPRINTING STUDIES ON LIGANDS WHICH STABILIZE DNA TRIPLEXES - EFFECTS ON STRINGENCY WITHIN A PARALLEL TRIPLE-HELIX

被引:52
作者
CHANDLER, SP
STREKOWSKI, L
WILSON, WD
FOX, KR
机构
[1] UNIV SOUTHAMPTON, DEPT PHYSIOL & PHARMACOL, SOUTHAMPTON SO16 7PX, HANTS, ENGLAND
[2] GEORGIA STATE UNIV, DEPT CHEM, ATLANTA, GA 30303 USA
关键词
D O I
10.1021/bi00021a039
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
We have examined the effect of four tripler-binding ligands on the interaction of the oligodeoxynucleotides T8NT8 (N = A, G, C, T) with DNA fragments containing the sequences A(8)XA(8) . T-8-YT8 (X = G, C, T; Y = C, G, A) by DNase I footprinting. The ligands form a series of quinoline derivatives with an alkylamine chain in the 4-position and different aryl substituents in the 2-position. By themselves these compounds do not alter DNase I digestion of the DNA duplexes at concentrations up to 100 mu M. At a concentration of 10 mu M they potentiate tripler formation, lowering the concentration of oligonucleotide required to produce a clear footprint by as much as 100-fold. As well as stabilizing triplexes which consist of well-characterized DNA triplets, they also promote the formation of complexes which contain central triplet mismatches. This reduction in the stringency of triple helix formation may be used to broaden the range of tripler target sequences and enable recognition at sites which contain short regions for which there are no good triplet matches.
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页码:7234 / 7242
页数:9
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共 43 条
  • [1] Amott S., Seising E., J. Mol Biol., 88, pp. 509-521, (1974)
  • [2] Beal P.A., Dervan P.B., Science, 251, pp. 1360-1363, (1991)
  • [3] Beal P.A., Dervan P.B., Nucleic Acids Res., 20, pp. 2773-2776, (1992)
  • [4] Birg F., Praseuth D., Zerial A., Thuong N.T., Asseline U., Le Doan T., Helfene C., Nucleic Acids Res., 18, pp. 2901-2908, (1990)
  • [5] Cassidy S.A., Strekowski L., Wilson W.D., Fox K.R., Biochemistry, 33, pp. 15338-15347, (1994)
  • [6] Chandler S.P., Fox K.R., FEBS Lett., 332, pp. 189-192, (1993)
  • [7] Chubb J.M., Hogan M.E., Trends Biotechnol., 10, pp. 132-136, (1992)
  • [8] Collier D.A., Mergny J.-L., Thuong N.T., Helene C., Nucleic Acids Res., 15, pp. 4219-4224, (1991)
  • [9] Durland R.H., Kessler D.J., Gunnell S., Duvic M., Petitt B.M., Hogan M.E., Biochemistry, 30, pp. 9246-9255, (1991)
  • [10] Felsenfeld G., Rich A., Biochim. Biophys. Acta, 26, pp. 457-468, (1957)