Ronald A. Shikiya, Ph.D.

Affiliations: 
2005 University of Nebraska Medical Center, Omaha, NE, United States 
Area:
Medical Biophysics, Physical Chemistry
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"Ronald Shikiya"
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Luis A. Marky grad student 2005 University of Nebraska Medical Center
 (Energetics, ion and water binding in the unfolding of DNA: Nearest -neighbor contributions and incorporation of bulges, mismatches, cationic chains and base -triplet stacks.)
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Publications

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Carr CE, Ganugula R, Shikiya R, et al. (2017) Effect of dC → d(m5C) Substitutions on the Folding of Intramolecular Triplexes with Mixed TAT and C+GC Base Triplets. Biochimie
Olsen CM, Shikiya R, Ganugula R, et al. (2015) Application of differential scanning calorimetry to measure the differential binding of ions, water and protons in the unfolding of DNA molecules. Biochimica Et Biophysica Acta
Saunders SE, Bartz JC, Shikiya RA. (2012) Protein misfolding cyclic amplification of prions. Journal of Visualized Experiments : Jove
Shikiya R, Khutsishvili I, Marky LA. (2012) Differential Binding of Ions and Water in the Unfolding of DNA Hairpins Biophysical Journal. 102: 277a
Ayers JI, Schutt CR, Shikiya RA, et al. (2011) The strain-encoded relationship between PrP replication, stability and processing in neurons is predictive of the incubation period of disease. Plos Pathogens. 7: e1001317
Soto AM, Rentzeperis D, Shikiya R, et al. (2006) DNA intramolecular triplexes containing dT --> dU substitutions: unfolding energetics and ligand binding. Biochemistry. 45: 3051-9
Shikiya R, Marky LA. (2005) Calorimetric unfolding of intramolecular triplexes: length dependence and incorporation of single AT --> TA substitutions in the duplex domain. The Journal of Physical Chemistry. B. 109: 18177-83
Shikiya R, Li JS, Gold B, et al. (2005) Incorporation of cationic chains in the Dickerson-Drew dodecamer: correlation of energetics, structure, and ion and water binding. Biochemistry. 44: 12582-8
Li JS, Chen FX, Shikiya R, et al. (2005) Molecular recognition via triplex formation of mixed purine/pyrimidine DNA sequences using oligoTRIPs. Journal of the American Chemical Society. 127: 12657-65
Li JS, Shikiya R, Marky LA, et al. (2004) Triple helix forming TRIPside molecules that target mixed purine/pyrimidine DNA sequences. Biochemistry. 43: 1440-8
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