Sarah E. Siegrist, Ph.D.

Institution:
University of Oregon, Eugene, OR, United States
Area:
drosophila CNS, development
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"Sarah Siegrist"

Parents

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Chris Q. Doe grad student 2005 University of Oregon
 (Extrinsic and intrinsic cues polarize the Drosophila neuroblast cortex.)
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Publications

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Sood C, Nahid MA, Branham KR, et al. (2023) Delta-dependent Notch activation closes the early neuroblast temporal program to promote lineage progression and neurogenesis termination in . Biorxiv : the Preprint Server For Biology
Dillon N, Cocanougher B, Sood C, et al. (2022) Single cell RNA-seq analysis reveals temporally-regulated and quiescence-regulated gene expression in Drosophila larval neuroblasts. Neural Development. 17: 7
Naomi Keliinui C, Doyle SE, Siegrist SE. (2022) Neural Stem Cell Reactivation in Cultured Drosophila Brain Explants. Journal of Visualized Experiments : Jove
Sood C, Justis VT, Doyle SE, et al. (2022) Notch signaling regulates neural stem cell quiescence entry and exit in Drosophila. Development (Cambridge, England). 149
Sood C, Doyle SE, Siegrist SE. (2020) Steroid hormones, dietary nutrients, and temporal progression of neurogenesis. Current Opinion in Insect Science
Yuan X, Sipe CW, Suzawa M, et al. (2020) Dilp-2-mediated PI3-kinase activation coordinates reactivation of quiescent neuroblasts with growth of their glial stem cell niche. Plos Biology. 18: e3000721
Pahl MC, Doyle SE, Siegrist SE. (2019) E93 Integrates Neuroblast Intrinsic State with Developmental Time to Terminate MB Neurogenesis via Autophagy. Current Biology : Cb
Sipe CW, Siegrist SE. (2017) Eyeless uncouples mushroom body neuroblast proliferation from dietary amino acids in Drosophila. Elife. 6
Janssens DH, Hamm DC, Anhezini L, et al. (2017) An Hdac1/Rpd3-Poised Circuit Balances Continual Self-Renewal and Rapid Restriction of Developmental Potential during Asymmetric Stem Cell Division. Developmental Cell. 40: 367-380.e7
Doyle SE, Pahl MC, Siller KH, et al. (2017) Neuroblast niche position is controlled by PI3-kinase dependent DE-Cadherin adhesion. Development (Cambridge, England)
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