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Items: 1 to 20 of 84

1.

The DNA-forming properties of 6-selenoguanine.

Faustino I, Curutchet C, Luque FJ, Orozco M.

Phys Chem Chem Phys. 2014 Jan 21;16(3):1101-10. doi: 10.1039/c3cp53885k. Epub 2013 Nov 28.

PMID:
24287926
2.

Theoretical study of the guanine --> 6-thioguanine substitution in duplexes, triplexes, and tetraplexes.

Spacková N, Cubero E, Sponer J, Orozco M.

J Am Chem Soc. 2004 Nov 10;126(44):14642-50.

PMID:
15521784
3.

Antiparallel triple helices. Structural characteristics and stabilization by 8-amino derivatives.

Aviñó A, Cubero E, González C, Eritja R, Orozco M.

J Am Chem Soc. 2003 Dec 24;125(51):16127-38.

PMID:
14678005
4.
5.

A combined QM and MM investigation into guanine quadruplexes.

Clay EH, Gould IR.

J Mol Graph Model. 2005 Oct;24(2):138-46.

PMID:
16168688
6.

Thermodynamic and kinetic characterization of the dissociation and assembly of quadruplex nucleic acids.

Hardin CC, Perry AG, White K.

Biopolymers. 2000-2001;56(3):147-94. Review.

PMID:
11745110
8.

DNA-triplex stabilizing properties of 8-aminoguanine.

Soliva R, Güimil García R, Blas JR, Eritja R, Asensio JL, González C, Luque FJ, Orozco M.

Nucleic Acids Res. 2000 Nov 15;28(22):4531-9.

9.

Guanine of the third strand of C.G*G triplex serves as an effective hole trap.

Dohno C, Nakatani K, Saito I.

J Am Chem Soc. 2002 Dec 11;124(49):14580-5.

PMID:
12465967
10.

Single strand targeted triplex formation: strand displacement of duplex DNA by foldback triplex-forming oligonucleotides.

Kandimalla ER, Manning AN, Agrawal S.

J Biomol Struct Dyn. 1995 Dec;13(3):483-91.

PMID:
8825728
11.

Molecular dynamics simulations on parallel and antiparallel C.G*G triplexes.

Kiran MR, Bansal M.

J Biomol Struct Dyn. 1998 Dec;16(3):511-26.

PMID:
10052610
12.

pH and cation effects on the properties of parallel pyrimidine motif DNA triplexes.

Sugimoto N, Wu P, Hara H, Kawamoto Y.

Biochemistry. 2001 Aug 7;40(31):9396-405.

PMID:
11478909
13.

Binding of novel azole-bridged dinuclear platinum(II) anticancer drugs to DNA: insights from hybrid QM/MM molecular dynamics simulations.

Magistrato A, Ruggerone P, Spiegel K, Carloni P, Reedijk J.

J Phys Chem B. 2006 Mar 2;110(8):3604-13.

PMID:
16494416
14.
15.

Factors regulating thermodynamic stability of DNA structures under molecular crowding conditions.

Miyoshi D, Karimata H, Sugimoto N.

Nucleic Acids Symp Ser (Oxf). 2006;(50):203-4.

PMID:
17150888
16.

Quantum mechanical calculations unveil the structure and properties of the absorbing and emitting excited electronic states of guanine quadruplex.

Improta R.

Chemistry. 2014 Jun 23;20(26):8106-15. doi: 10.1002/chem.201400065. Epub 2014 May 14.

PMID:
24828154
17.

Effect of O6-methylguanine on the stability of G-quadruplex DNA.

Mekmaysy CS, Petraccone L, Garbett NC, Ragazzon PA, Gray R, Trent JO, Chaires JB.

J Am Chem Soc. 2008 May 28;130(21):6710-1. doi: 10.1021/ja801976h. Epub 2008 May 1.

PMID:
18447358
18.

Triplex formation involving 2',4'-BNA with 2-pyridone base analogue: efficient and selective recognition of C:G interruption.

Torigoe H, Hari Y, Obika S, Imanishi T.

Nucleic Acids Res Suppl. 2001;(1):281-2.

PMID:
12836374
19.

8-oxoguanine in a quadruplex of the human telomere DNA sequence.

Vorlícková M, Tomasko M, Sagi AJ, Bednarova K, Sagi J.

FEBS J. 2012 Jan;279(1):29-39. doi: 10.1111/j.1742-4658.2011.08396.x. Epub 2011 Nov 11.

20.

Hydration regulates thermodynamics of G-quadruplex formation under molecular crowding conditions.

Miyoshi D, Karimata H, Sugimoto N.

J Am Chem Soc. 2006 Jun 21;128(24):7957-63.

PMID:
16771510

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