Andrew V. Colasanti, Ph.D.
Affiliations: | 2006 | Rutgers University, New Brunswick, New Brunswick, NJ, United States |
Area:
conformation, properties, and interactions of nucleic acidsGoogle:
"Andrew Colasanti"Mean distance: 9.84 | S | N | B | C | P |
Parents
Sign in to add mentorWilma K. Olson | grad student | 2006 | Rutgers, New Brunswick | |
(Conformational states of double helical DNA.) |
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Publications
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Olson WK, Li S, Kaukonen T, et al. (2019) Effects of Noncanonical Base Pairing on RNA Folding: Structural Context and Spatial Arrangements of G∙A Pairs. Biochemistry |
Singh G, Colasanti AV, Clauvelin N, et al. (2015) Dynamics of the Nucleosome Core Particle Revealed from a New Database of High-Resolution X-Ray Crystallographic and Simulated Structures Biophysical Journal. 108: 541a |
Perez PJ, Clauvelin N, Grosner MA, et al. (2014) What controls DNA looping? International Journal of Molecular Sciences. 15: 15090-108 |
Colasanti AV, Grosner MA, Perez PJ, et al. (2013) Weak operator binding enhances simulated lac repressor-mediated DNA looping. Biopolymers. 99: 1070-81 |
Colasanti AV, Lu XJ, Olson WK. (2013) Analyzing and building nucleic acid structures with 3DNA. Journal of Visualized Experiments : Jove. e4401 |
Olson WK, Clauvelin N, Colasanti AV, et al. (2012) Insights into Gene Expression and Packaging from Computer Simulations. Biophysical Reviews. 4: 171-178 |
Kulaeva OI, Zheng G, Polikanov YS, et al. (2012) Internucleosomal interactions mediated by histone tails allow distant communication in chromatin. The Journal of Biological Chemistry. 287: 20248-57 |
Xu F, Colasanti AV, Li Y, et al. (2010) Long-range effects of histone point mutations on DNA remodeling revealed from computational analyses of SIN-mutant nucleosome structures. Nucleic Acids Research. 38: 6872-82 |
Zheng G, Colasanti AV, Lu XJ, et al. (2010) 3DNALandscapes: a database for exploring the conformational features of DNA. Nucleic Acids Research. 38: D267-74 |
Srinivasan AR, Sauers RR, Fenley MO, et al. (2009) Properties of the Nucleic-acid Bases in Free and Watson-Crick Hydrogen-bonded States: Computational Insights into the Sequence-dependent Features of Double-helical DNA. Biophysical Reviews. 1: 13-20 |