Tamar Schlick

Program in Computational Biology New York University, New York, NY, United States 
Bioinformatics, Biochemistry
"Tamar Schlick"


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Charles S. Peskin grad student 1987 NYU (MathTree)


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Xiaoliang Qian grad student 2002 NYU
Karunesh Arora grad student 2006 NYU
Namhee Kim grad student 2009 NYU
Meredith C. Foley grad student 2011 NYU
Segun Jung grad student 2013 NYU
Mihaela Diana Bojin post-doc NYU (Chemistry Tree)
Rosana Collepardo-Guevara post-doc (Chemistry Tree)
Durba Roy post-doc 2011-2012 NYU (Chemistry Tree)
Uri Laserson research scientist 2002-2005 New York University (Neurotree)
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Sridhar A, Farr SE, Portella G, et al. (2020) Emergence of chromatin hierarchical loops from protein disorder and nucleosome asymmetry. Proceedings of the National Academy of Sciences of the United States of America
Jain S, Zhu Q, Paz ASP, et al. (2020) Identification of novel RNA design candidates by clustering the extended RNA-as-graphs library. Biochimica Et Biophysica Acta. General Subjects. 129534
Jain S, Tao Y, Schlick T. (2019) Inverse Folding with RNA-As-Graphs Produces a Large Pool of Candidate Sequences with Target Topologies. Journal of Structural Biology. 107438
Myers CG, Olins DE, Olins AL, et al. (2019) Mesoscale Modeling of Nucleosome-Binding Antibody PL2-6: Mono- versus Bivalent Chromatin Complexes. Biophysical Journal
Meng G, Tariq M, Jain S, et al. (2019) RAG-Web: RNA Structure Prediction/Design using RNA-As-Graphs. Bioinformatics (Oxford, England)
Jung J, Nishima W, Daniels M, et al. (2019) Scaling molecular dynamics beyond 100,000 processor cores for large-scale biophysical simulations. Journal of Computational Chemistry
Perišić O, Portillo-Ledesma S, Schlick T. (2019) Sensitive effect of linker histone binding mode and subtype on chromatin condensation. Nucleic Acids Research
Jain S, Saju S, Petingi L, et al. (2019) An Extended Dual Graph Library and Partitioning Algorithm Applicable to Pseudoknotted RNA Structures. Methods (San Diego, Calif.)
Bascom GD, Myers CG, Schlick T. (2019) Mesoscale modeling reveals formation of an epigenetically driven HOXC gene hub. Proceedings of the National Academy of Sciences of the United States of America
Sridhar A, Farr S, Portella G, et al. (2019) Chromatin Structure Regulation by an Epigenetic Switch Tuning the Flexibility of the H1 C-Terminal Domain Biophysical Journal. 116: 70a
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