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DNA (Structure)
LE WE PMID CA
DNA (Structure)712DNA (Struktur)

Cell cylce (BASKET)

DNA (binding proteins)

DNA (Methylation)

DNA (Quadruplex)

DNA (Repair and Toxicology)

DNA (Replication)

DNA (Restriction)

DNA (Structure)

DNA (Triplex)

Evolution

Genetic instability

Hydrogen bond

Simulation of biological processes (Bioinformatics)

Structure det. tissue level to single molecule localization

Structure determination at molecular level and finer

1992  
1
2004  
2
Structural mechanisms of DNA replication, repair, and recombination.
[15090549] J Biol Chem 279(30): 30915-8 (2004)
1990  
3
Nucleoprotein structures initiating DNA replication, transcription, and site-specific recombination.
[2203758] J Biol Chem 265(25): 14697-700 (1990)
1988  
4
2008  
5
Stability and kinetics of G-quadruplex structures.
[18718931] Nucleic Acids Res 36(17): 5482-515 (2008)
2008  
6
The triple helix: 50 years later, the outcome.
[18676453] Nucleic Acids Res 36(16): 5123-38 (2008)
2007  
7
Human telomere, oncogenic promoter and 5'-UTR G-quadruplexes: diverse higher order DNA and RNA targets for cancer therapeutics.
[17913750] Nucleic Acids Res 35(22): 7429-55 (2007)
2006  
8
Quadruplex DNA: sequence, topology and structure.
[17012276] Nucleic Acids Res 34(19): 5402-15 (2006)
1995  
9
Relative stabilities of DNA three-way, four-way and five-way junctions (multi-helix junction loops): unpaired nucleotides can be stabilizing or destabilizing.
[7610050] Nucleic Acids Res 23(12): 2212-22 (1995)
2002  
10
DNA-lipid systems. A physical chemistry study.
[12011935] Braz J Med Biol Res 35(5): 509-22 (2002)
2007  
11
First International Meeting on Quadruplex DNA.
[17894437] ACS Chem Biol 2(9): 589-94 (2007)
2011  
12
Put on your thinking cap: G-quadruplexes, helicases, and telomeres.
[21732565] Aging (Albany NY) 3(4): 332-5 (2011)
2006  
13
Electron transfer processes in DNA: mechanisms, biological relevance and applications in DNA analytics.
[17119642] Nat Prod Rep 23(6): 973-1006 (2006)
2010  
14
The many twists and turns of DNA: template, telomere, tool, and target.
[20381338] Curr Opin Struct Biol 20(3): 262-75 (2010)
2010  
15
Single-molecule approaches to probe the structure, kinetics, and thermodynamics of nucleoprotein complexes that regulate transcription.
[20382734] J Biol Chem 285(25): 18973-8 (2010)
2004  
16
2004  
17
2004  
18
2004  
19
Theory of self-contact in Kirchhoff rods with applications to supercoiling of knotted and unknotted DNA plasmids.
[15306451] Philos Transact A Math Phys Eng Sci 362(1820): 1281-99 (2004)
2004  
20
Finite-element analysis of the displacement of closed DNA loops under torsional stress.
[15306454] Philos Transact A Math Phys Eng Sci 362(1820): 1335-53 (2004)
2007  
21
Four-stranded DNA: cancer, gene regulation and drug development.
[17855220] Philos Transact A Math Phys Eng Sci 365(1861): 2969-84 (2007)
2007  
22
The long and winding road to the structure of homo-DNA.
[17173143] Chem Soc Rev 36(1): 31-45 (2007)
2007  
23
Molecular recognition via base-pairing.
[17264932] Chem Soc Rev 36(2): 314-25 (2007)
2007  
24
Synthetic metallomolecules as agents for the control of DNA structure.
[17325786] Chem Soc Rev 36(3): 471-83 (2007)
2010  
25
Non-B DNA structure-induced genetic instability and evolution.
[19727556] Cell Mol Life Sci 67(1): 43-62 (2010)
2004  
26
A topological view of the replicon.
[14993926] EMBO Rep 5(3): 256-61 (2004)
2007  
27
Model systems for understanding DNA base pairing.
[17967435] Curr Opin Chem Biol 11(6): 588-94 (2007)
2010  
28
DNA supercoiling and its role in DNA decatenation and unknotting.
[20026582] Nucleic Acids Res 38(7): 2119-33 (2010)
2003  
29
Unusual DNA duplex and hairpin motifs.
[12736295] Nucleic Acids Res 31(10): 2461-74 (2003)
2008  
30
See me, feel me: methods to concurrently visualize and manipulate single DNA molecules and associated proteins.
[18586820] Nucleic Acids Res 36(13): 4381-9 (2008)
2010  
31
Mechanisms for DNA charge transport.
[20214403] Chem Rev 110(3): 1642-62 (2010)
2008  
32
Nanoscale structure and dynamics of DNA.
[18292856] Phys Chem Chem Phys 10(9): 1229-42 (2008)
2011  
33
Cruciform structures are a common DNA feature important for regulating biological processes.
[21816114] BMC Mol Biol 12(-): 33 (2011)
2008  
34
DNA triple helices: biological consequences and therapeutic potential.
[18331847] Biochimie 90(8): 1117-30 (2008)
2011  
35
2010  
36
Maintaining a sense of direction during long-range communication on DNA.
[20298192] Biochem Soc Trans 38(2): 404-9 (2010)
2010  
37
Biophysical characterization of DNA binding from single molecule force measurements.
[20576476] Phys Life Rev 7(3): 299-341 (2010)
2010  
38
A comparative approach for the investigation of biological information processing: an examination of the structure and function of computer hard drives and DNA.
[20092652] Theor Biol Med Model 7(-): 3 (2010)
2004  
39
DNA toroids: framework for DNA repair in Deinococcus radiodurans and in germinating bacterial spores.
[15342565] J Bacteriol 186(18): 5973-7 (2004)
2009  
40
Checkpoint responses to unusual structures formed by DNA repeats.
[19306277] Mol Carcinog 48(4): 309-18 (2009)
2005  
41
Organization of supercoil domains and their reorganization by transcription.
[16135220] Mol Microbiol 57(6): 1511-21 (2005)
2010  
42
Folded DNA in action: hairpin formation and biological functions in prokaryotes.
[21119018] Microbiol Mol Biol Rev 74(4): 570-88 (2010)

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