Scott D. Weatherbee
Affiliations: | Yale University, New Haven, CT |
Area:
Genetics, Human DevelopmentGoogle:
"Scott Weatherbee"Parents
Sign in to add mentorKathryn V. Anderson | grad student | Sloan-Kettering (FlyTree) | |
Sean B. Carroll | grad student | (FlyTree) | |
Lee Niswander | post-doc | Memorial Sloan Kettering (Neurotree) |
Children
Sign in to add traineeKasey J. Christopher | grad student | 2014 | Yale |
Emily K. Marsillio | grad student | 2014 | Yale |
Daisy Xin | grad student | 2012-2017 | Yale |
Natalia A. Shylo | grad student | 2012-2018 | Yale |
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Publications
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Dubaic M, Peskova L, Hampl M, et al. (2023) Role of ciliopathy protein TMEM107 in eye development: insights from a mouse model and retinal organoid. Life Science Alliance. 6 |
Li Y, Tang L, Yue J, et al. (2020) Regulation of epidermal differentiation through KDF1-mediated deubiquitination of IKKα. Embo Reports. e48566 |
Uyhazi KE, Yang Y, Liu N, et al. (2020) Pumilio proteins utilize distinct regulatory mechanisms to achieve complementary functions required for pluripotency and embryogenesis. Proceedings of the National Academy of Sciences of the United States of America |
Shylo NA, Emmanouil E, Ramrattan D, et al. (2019) Loss of ciliary transition zone protein TMEM107 leads to heterotaxy in mice. Developmental Biology |
Sarro R, Kocher AA, Emera D, et al. (2018) Disrupting the three-dimensional regulatory topology of thelocus results in overtly normal development. Development (Cambridge, England) |
Dave JM, Mirabella T, Weatherbee SD, et al. (2018) Pericyte ALK5/TIMP3 Axis Contributes to Endothelial Morphogenesis in the Developing Brain. Developmental Cell |
Cela P, Hampl M, Shylo NA, et al. (2017) Ciliopathy Protein Tmem107 Plays Multiple Roles in Craniofacial Development. Journal of Dental Research. 22034517732538 |
Ahn Y, Sims C, Murray MJ, et al. (2017) Multiple modes of Lrp4 function in modulation of Wnt/β-catenin signaling during tooth development. Development (Cambridge, England) |
Xin D, Christopher KJ, Zeng L, et al. (2017) IFT56 regulates vertebrate developmental patterning by maintaining IFTB integrity and ciliary microtubule architecture. Development (Cambridge, England) |
Xin D, Christopher KJ, Zeng L, et al. (2017) IFT56 regulates vertebrate developmental patterning by maintaining IFTB complex integrity and ciliary microtubule architecture Journal of Cell Science. 130 |