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Nucleic Acids Research|June 11, 1995
Occurrence of potential cruciform and H-DNA forming sequences in genomic DNAG P Schroth, P S HoProceedings of the National Academy of Sciences of the United States of America|July 3, 1995
An A-DNA triplet code: thermodynamic rules for predicting A- and B-DNAB Basham, G P Schroth, P S HoBiochemistry|December 3, 1996
Sequence-dependent effects of spermine on the thermodynamics of the B-DNA to Z-DNA transitionM L Howell, G P Schroth, P S HoBiochemistry|December 14, 1993
Structure and thermodynamics of nonalternating C.G base pairs in Z-DNA: the 1.3-A crystal structure of the asymmetric hexanucleotide d(m5CGGGm5CG).d(m5CGCCm5CG)G P Schroth, T F Kagawa, P S HoThe Journal of Biological Chemistry|June 15, 1992
Mapping Z-DNA in the human genome. Computer-aided mapping reveals a nonrandom distribution of potential Z-DNA-forming sequences in human genesG P Schroth, P J Chou, P S HoNucleic Acids Research|February 11, 1991
TFIIIA induced DNA bending: effect of low ionic strength electrophoresis buffer conditionsG P Schroth, J M Gottesfeld, E M BradburyThe Journal of Biological Chemistry|January 25, 1989
Analysis of the binding of high mobility group protein 17 to the nucleosome core particle by 1H NMR spectroscopyG R Cook, M Minch, G P Schroth, et al.Proceedings of the National Academy of Sciences of the United States of America|July 18, 1995
High-affinity binding sites for histone H1 in plasmid DNAJ Yaneva, G P Schroth, K E van Holde, et al.Nucleic Acids Research|December 24, 1998
The intrinsic structure and stability of out-of-alternation base pairs in Z-DNAB F Eichman, G P Schroth, B E Basham, et al.Journal of Molecular Biology|June 16, 1995
Alternating and non-alternating dG-dC hexanucleotides crystallize as canonical A-DNAB H Mooers, G P Schroth, W W Baxter, et al.Pageof 3