The SV40 large T-antigen helicase can unwind four stranded DNA structures linked by G-quartets
- 15 January 1997
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 25 (2), 297-303
- https://doi.org/10.1093/nar/25.2.297
Abstract
We describe a novel activity of the SV40 large T-ag helicase, the unwinding of four stranded DNA structures linked by stacked G-quartets, namely stacked groups of four guanine bases bound by Hoogsteen hydrogen bonds. The structures unwound by the helicase were of two types: (i) quadruplexes comprising four parallel strands that were generated by annealing oligonucleotides including clustered G residues in a buffer containing Na+ions. Each parallel quadruplex consisted of four oligonucleotide molecules. (ii) Complexes comprising two parallel and two antiparallel strands that were generated by annealing the above oligonucleotides in a buffer containing K+ions. Each antiparallel complex consisted of two folded oligonucleotide molecules. Unwinding of these unusual DNA structures by the T-ag was monitored by gel electrophoresis. The unwinding process required ATP and at least one single stranded 3'-tail extending beyond the four stranded region. These data indicated that the T-ag first binds the 3'-tail and moves in a 3'-->5'direction, using energy provided by ATP hydrolysis; then it unwinds the four stranded DNA into single strands. This helicase activity may affect processes such as recombination and telomere extension, in which four stranded DNA could play a role.Keywords
This publication has 41 references indexed in Scilit:
- TELOMERASESAnnual Review of Biochemistry, 1992
- Crystal structure of four-stranded Oxytricha telomeric DNANature, 1992
- Quadruplex structure of Oxytricha telomeric DNA oligonucleotidesNature, 1992
- Recognition of a chromosome truncation site associated with α-thalassaemia by human telomeraseNature, 1991
- Telomerase primer specificity and chromosome healingNature, 1991
- Inhibition of telomerase by G-quartet DMA structuresNature, 1991
- A sodium-potassium switch in the formation of four-stranded G4-DNANature, 1990
- G-DNA: a twice-folded DNA structure adopted by single-stranded oligo(dG) and its implications for telomeres.Proceedings of the National Academy of Sciences, 1990
- Telomeric DNA dimerizes by formation of guanine tetrads between hairpin loopsNature, 1989
- Monovalent cation-induced structure of telomeric DNA: The G-quartet modelCell, 1989