Jeremy F. Reiter

Affiliations: 
Cell Biology University of California, San Francisco, San Francisco, CA 
Area:
Cell Biology, Genetics, Molecular Biology
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"Jeremy Reiter"

Parents

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William C. Skarnes grad student UC Berkeley
 (Postdoc)
Didier Stainier grad student UCSF (DevTree)

Children

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Veena Singla grad student 2010 UCSF
Julie Hunkapiller grad student 2011 UCSF
William E. Dowdle grad student 2012 UCSF
Nicole M. Santos grad student 2012 UCSF
Shifeng Xue grad student 2014 UCSF
Colin Dinsmore grad student 2007-2015 UCSF
Elle C Roberson grad student 2011-2016 UCSF
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Publications

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Hilgendorf KI, Myers BR, Reiter JF. (2024) Emerging mechanistic understanding of cilia function in cellular signalling. Nature Reviews. Molecular Cell Biology
Daggubati V, Vykunta A, Choudhury A, et al. (2023) Hedgehog target genes regulate lipid metabolism to drive basal cell carcinoma and medulloblastoma. Research Square
Hoppe N, Harrison S, Hwang SH, et al. (2023) GPR161 structure uncovers the redundant role of sterol-regulated ciliary cAMP signaling in the Hedgehog pathway. Biorxiv : the Preprint Server For Biology
Abrams SR, Reiter JF. (2021) Ciliary Hedgehog signaling regulates cell survival to build the facial midline. Elife. 10
Truong ME, Bilekova S, Choksi SP, et al. (2021) Vertebrate cells differentially interpret ciliary and extraciliary cAMP. Cell
Hasenpusch-Theil K, Laclef C, Colligan M, et al. (2020) A transient role of the ciliary gene in controlling direct versus indirect neurogenesis in cortical development. Elife. 9
Hilgendorf KI, Johnson CT, Mezger A, et al. (2019) Omega-3 Fatty Acids Activate Ciliary FFAR4 to Control Adipogenesis. Cell
Phua SC, Chiba S, Suzuki M, et al. (2019) Dynamic Remodeling of Membrane Composition Drives Cell Cycle through Primary Cilia Excision. Cell. 178: 261
Bansal R, Engle SE, Antonellis PJ, et al. (2019) Hedgehog Pathway Activation Alters Ciliary Signaling in Primary Hypothalamic Cultures. Frontiers in Cellular Neuroscience. 13: 266
Kodani A, Moyer T, Chen A, et al. (2019) SFI1 promotes centriole duplication by recruiting USP9X to stabilize the microcephaly protein STIL. The Journal of Cell Biology
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