Zeba B. Wunderlich, Ph.D.
Affiliations: | 2008 | Harvard University, Cambridge, MA, United States |
Area:
Population genetics and evolutionary theory; Polymer physics theory and simulation; Statistical interpretation of genome-wide dataGoogle:
"Zeba Wunderlich"Mean distance: 10.11 | S | N | B | C | P |
Parents
Sign in to add mentorLeonid A. Mirny | grad student | 2008 | Harvard | |
(Dynamic and equilibrium modeling of metabolic network, protein-DNA and protein-peptide interactions.) |
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Publications
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Waymack R, Gad M, Wunderlich Z. (2021) Molecular competition can shape enhancer activity in the embryo. Iscience. 24: 103034 |
Lopez-Rivera F, Foster Rhoades OK, Vincent BJ, et al. (2020) A Mutation in the Stripe 2 Minimal Enhancer Is Buffered by Flanking Sequences. G3 (Bethesda, Md.) |
Park J, Estrada J, Johnson G, et al. (2019) Dissecting the sharp response of a canonical developmental enhancer reveals multiple sources of cooperativity. Elife. 8 |
Wunderlich Z, Fowlkes CC, Eckenrode KB, et al. (2019) Quantitative Comparison of the Anterior-Posterior Patterning System in the Embryos of Five Species. G3 (Bethesda, Md.) |
Osman NM, Kitapci TH, Vlaho S, et al. (2018) Inference of Transcription Factor Regulation Patterns Using Gene Expression Covariation in Natural Populations of . Biophysics. 63: 43-51 |
Vincent BJ, Staller MV, Lopez-Rivera F, et al. (2018) Hunchback is counter-repressed to regulate even-skipped stripe 2 expression in Drosophila embryos. Plos Genetics. 14: e1007644 |
Wang X, Zhou T, Wunderlich Z, et al. (2018) Analysis of Genetic Variation Indicates DNA Shape Involvement in Purifying Selection. Molecular Biology and Evolution |
Samee MAH, Lydiard-Martin T, Biette KM, et al. (2017) Quantitative Measurement and Thermodynamic Modeling of Fused Enhancers Support a Two-Tiered Mechanism for Interpreting Regulatory DNA. Cell Reports. 21: 236-245 |
Li L, Wunderlich Z. (2017) An Enhancer's Length and Composition Are Shaped by Its Regulatory Task. Frontiers in Genetics. 8: 63 |
Estrada J, Ruiz-Herrero T, Scholes C, et al. (2016) SiteOut: An Online Tool to Design Binding Site-Free DNA Sequences. Plos One. 11: e0151740 |