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Journal of the American Chemical Society|September 13, 2008
Quantum mechanics/molecular mechanics investigation of the chemical reaction in Dpo4 reveals water-dependent pathways and requirements for active site reorganizationYanli Wang, Tamar SchlickNucleic Acids Research|November 28, 2023
Hi-BDiSCO: folding 3D mesoscale genome structures from Hi-C data using brownian dynamicsZilong Li, Tamar SchlickThe Journal of Physical Chemistry. B|January 29, 2026
Kinetic Traps in RNA Folding: Targeted Design of Frameshifting Element Mutants by Thermodynamic and Kinetic Analysis of the Chikungunya VirusSamuel Lee, Tamar SchlickBiophysical Journal|November 18, 2010
Modeling DNA polymerase μ motions: subtle transitions before chemistryYunlang Li, Tamar SchlickProceedings of the National Academy of Sciences of the United States of America|October 25, 2006
Role of histone tails in chromatin folding revealed by a mesoscopic oligonucleosome modelGaurav Arya, Tamar SchlickThe Journal of Physical Chemistry. A|March 21, 2009
A tale of tails: how histone tails mediate chromatin compaction in different salt and linker histone environmentsGaurav Arya, Tamar SchlickProceedings of the National Academy of Sciences of the United States of America|April 8, 2004
Orchestration of cooperative events in DNA synthesis and repair mechanism unraveled by transition path sampling of DNA polymerase beta's closingRavi Radhakrishnan, Tamar SchlickPlos Computational Biology|May 30, 2013
"Gate-keeper" residues and active-site rearrangements in DNA polymerase μ help discriminate non-cognate nucleotidesYunlang Li, Tamar SchlickThe Journal of Physical Chemistry. B|July 23, 2017
Dependence of the Linker Histone and Chromatin Condensation on the Nucleosome EnvironmentOgnjen Perišić, Tamar SchlickBiophysical Journal|February 4, 2017
Linking Chromatin Fibers to Gene Folding by Hierarchical LoopingGavin Bascom, Tamar SchlickPageof 33