Prof. Andrew Lane
Prof. Andrew Lane
Prof. Lane holds the James Graham Brown Chair of Structural Biology, University of Louisville, Kentucky, and is Director of the James Graham Brown Cancer Center NMR Facility.
28 Papers
NMR Determination of the Solution Conformation and Dynamics of the A.G Mismatch in the d(CGCAAATTGGCG)2 Dodecamer
269-281, 1991.
Biochem. J 279,Interaction of Berenil with the Eco.RI Dodecamer d(CGCGAATTCGCG)2 in Solution Studied by NMR
(5), 1372-1385, 1991.
Biochemistry 30Conformational Properties of the G.G Mismatch in d(CGCGAATTGGCG)2 Determined by NMR
(23), 5411-5422, 1992.
Biochemistry 31Very Stable Mismatch Duplexes - Structural and Thermodynamic Studies on Tandem G.A Mismatches in DNA
(48), 12083-12086, 1992.
Biochemistry 31Solution Conformation of a Deoxyoligonucleotide Containing Tandem G.A Mismatched Base-Pairs and 3'-Overhanging Ends in d(GTGAACTT)2
(48), 12087-12095, 1992.
Biochemistry 31NMR Assignments and Solution Conformation of the DNA.RNA Hybrid Duplex d(GTGAACTT).r(AAGUUCAC)
(2), 297-306, 1993.
Eur. J. Biochem. 215Thermodynamic Stability and Solution Conformation of Tandem G.A Mismatches in RNA and RNA.DNA Hybrid Duplexes
(3), 703-715, 1994.
Eur. J. Biochem. 220Properties of Multiple G.A Mismatches in Stable Oligonucleotide Duplexes
(3), 717-727, 1994.
Eur. J. Biochem. 220Hydration of the RNA duplex r(CGCAAAUUUGCG)2 determined by NMR
(19), 3693-3699, 1996.
Nucleic Acids Res. 24Comparison of the thermodynamic stabilities and solution conformations of DNA.RNA hybrids containing purine- rich and pyrimidine-rich strands with DNA and RNA duplexes
(38), 12538-12548, 1996.
Biochemistry 35Solution conformation of an intramolecular DNA triplex containing a nonnucleotide linker: Comparison with the DNA duplex
(47), 14502-14511, 1997.
Biochemistry 36Comparison of the electrophoretic and hydrodynamic properties of DNA and RNA oligonucleotide duplexes
(3), 1532-1538, 1997.
Biophys. J. 73Conformational properties and thermodynamics of the RNA duplex r(CGCAAAUUUGCG)2: Comparison with the DNA analogue d(CGCAAATTTGCG)2
(13), 2627-2634, 1997.
Nucleic Acids Res. 25The effect of pH on the thermally induced melting of two intra- molecular oligonucleotide triplexes: Calorimetric studies
(2), TH447-TH447, 1997.
Biophys. J. 72Coralyne has a preference for intercalation between TA.T triplets in intramolecular DNA triple helices
(10), 1890-1896, 1997.
Nucleic Acids Res. 25The dependence of DNase I activity on the conformation of oligodeoxynucleotides
481-486, 1997.
Biochem. J 321,Comparison of the solution structures of intramolecular DNA triple helices containing adjacent and non-adjacent CG.C+ triplets
(16), 3677-3686, 1998.
Nucleic Acids Res. 26The contribution of cytosine protonation to the stability of parallel DNA triple helices
(5), 811-822, 1998.
J. Mol. Biol. 275Solution structures of DNA.RNA hybrids with purine- rich and pyrimidine-rich strands: Comparison with the homologous DNA and RNA duplexes
(1), 73-80, 1998.
Biochemistry 37The orientation and dynamics of the C2'-OH and hydration of RNA and DNA-RNA hybrids
(13), 3104-3110, 1998.
Nucleic Acids Res. 26Solution conformation of a parallel DNA triple helix with 5' and 3' triplex-duplex junctions
(1), 1-11, 1999.
Structure 7Conformational and thermodynamic properties of parallel intramolecular triple helices containing a DNA, RNA, or 2'- OMeDNA third strand
(48), 11063-11070, 1999.
J. Am. Chem. Soc. 121The solution structure of a DNA.RNA duplex containing 5-propynyl U and C; comparison with 5-Me modifications
(10), 2683-2693, 2003.
Nucleic Acids Res. 31Determining the origin of the stabilization of DNA by 5- aminopropynylation of pyrimidines
(12), 4710-4719, 2005.
Biochemistry 44A very stable cyclic DNA miniduplex with just two base pairs
(1), 50-52, 2008.
ChemBioChem 9Structural analysis of the DNA target site and its interaction with Mbp1
(23), 4981-4991, 2009.
Org. Biomol. Chem. 75-Formylcytosine does not change the global structure of DNA
544-552, 2017.
Nat. Struct. Mol. Biol. 24,Epigenetic Modifications of Cytosine: Biophysical Properties, Regulation, and Function in Mammalian DNA
(3), 2018.
BioEssays 40