Stacey Glasgow • UCSD Profiles (original) (raw)

  1. A fetal oncogene NUAK2 is an emerging therapeutic target in glioblastoma. EMBO Mol Med. 2025 Sep; 17(9):2409-2437. Jo H, Munoz S, Dalvi A, Yang W, Morozova E, Glasgow SM. PMID: 40770117; PMCID: PMC12423323.
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    Translation:HumansAnimalsCells
  2. Spinal motor neuron development and metabolism are transcriptionally regulated by nuclear factor IA. Sci Adv. 2025 Aug; 11(31):eadu3346. Gauberg J, Jenkins S, Moreno KB, Jayaraman K, Abumeri S, Salazar A, Meharena HS, Glasgow SM. PMID: 40749054; PMCID: PMC12315974.
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    Translation:AnimalsCells
  3. A fetal oncogene NUAK2 is an emerging therapeutic target in glioblastoma. bioRxiv. 2025 Jan 02. Jo H, Dalvi A, Yang W, Morozova E, Munoz S, Glasgow SM. PMID: 39803558; PMCID: PMC11722409.
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  4. Spinal motor neuron development and metabolism are transcriptionally regulated by Nuclear Factor IA. bioRxiv. 2024 Jun 26. Gauberg J, Moreno KB, Jayaraman K, Abumeri S, Jenkins S, Salazar AM, Meharena HS, Glasgow SM. PMID: 38979382; PMCID: PMC11230388.
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  5. The Role of Neurodevelopmental Pathways in Brain Tumors. Front Cell Dev Biol. 2021; 9:659055. Curry RN, Glasgow SM. PMID: 34012965; PMCID: PMC8127784.
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  6. Nuclear factor I-A regulates diverse reactive astrocyte responses after CNS injury. J Clin Invest. 2019 10 01; 129(10):4408-4418. Laug D, Huang TW, Huerta NAB, Huang AY, Sardar D, Ortiz-Guzman J, Carlson JC, Arenkiel BR, Kuo CT, Mohila CA, Glasgow SM, Lee HK, Deneen B. PMID: 31498149; PMCID: PMC6763246.
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    Translation:HumansAnimalsCells
  7. Pancreatic Cell Fate Determination Relies on Notch Ligand Trafficking by NFIA. Cell Rep. 2018 12 26; 25(13):3811-3827.e7. Scavuzzo MA, Chmielowiec J, Yang D, Wamble K, Chaboub LS, Duraine L, Tepe B, Glasgow SM, Arenkiel BR, Brou C, Deneen B, Borowiak M. PMID: 30590051.
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    Translation:HumansAnimalsCells
  8. A glial blueprint for gliomagenesis. Nat Rev Neurosci. 2018 07; 19(7):393-403. Laug D, Glasgow SM, Deneen B. PMID: 29777182; PMCID: PMC6536307.
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    Translation:HumansAnimalsCells
  9. Glia-specific enhancers and chromatin structure regulate NFIA expression and glioma tumorigenesis. Nat Neurosci. 2017 Nov; 20(11):1520-1528. Glasgow SM, Carlson JC, Zhu W, Chaboub LS, Kang P, Lee HK, Clovis YM, Lozzi BE, McEvilly RJ, Rosenfeld MG, Creighton CJ, Lee SK, Mohila CA, Deneen B. PMID: 28892058; PMCID: PMC5919190.
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    Translation:AnimalsCells
  10. lnc'edin to Myelin. Neuron. 2017 Jan 18; 93(2):252-254. Glasgow SM, Deneen B. PMID: 28103473.
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    Translation:Cells
  11. Temporal Profiling of Astrocyte Precursors Reveals Parallel Roles for Asef during Development and after Injury. J Neurosci. 2016 11 23; 36(47):11904-11917. Chaboub LS, Manalo JM, Lee HK, Glasgow SM, Chen F, Kawasaki Y, Akiyama T, Kuo CT, Creighton CJ, Mohila CA, Deneen B. PMID: 27881777; PMCID: PMC5125245.
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    Translation:HumansAnimalsCells
  12. Corrigendum: miR-218 is essential to establish motor neuron fate as a downstream effector of Isl1-Lhx3. Nat Commun. 2015 Aug 21; 6:8227. Thiebes KP, Nam H, Cambronne XA, Shen R, Glasgow SM, Cho HH, Kwon JS, Goodman RH, Lee JW, Lee S, Lee SK. PMID: 26293702; PMCID: PMC4560809.
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  13. miR-218 is essential to establish motor neuron fate as a downstream effector of Isl1-Lhx3. Nat Commun. 2015 Jul 27; 6:7718. Thiebes KP, Nam H, Cambronne XA, Shen R, Glasgow SM, Cho HH, Kwon JS, Goodman RH, Lee JW, Lee S, Lee SK. PMID: 26212498; PMCID: PMC4518464.
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    Translation:HumansAnimalsCells
  14. Mutual antagonism between Sox10 and NFIA regulates diversification of glial lineages and glioma subtypes. Nat Neurosci. 2014 Oct; 17(10):1322-9. Glasgow SM, Zhu W, Stolt CC, Huang TW, Chen F, LoTurco JJ, Neul JL, Wegner M, Mohila C, Deneen B. PMID: 25151262; PMCID: PMC4313923.
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    Translation:AnimalsCells
  15. The miR-223/nuclear factor I-A axis regulates glial precursor proliferation and tumorigenesis in the CNS. J Neurosci. 2013 Aug 14; 33(33):13560-8. Glasgow SM, Laug D, Brawley VS, Zhang Z, Corder A, Yin Z, Wong ST, Li XN, Foster AE, Ahmed N, Deneen B. PMID: 23946414; PMCID: PMC3742938.
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    Translation:HumansAnimalsCells
  16. Expression profiling of Aldh1l1-precursors in the developing spinal cord reveals glial lineage-specific genes and direct Sox9-Nfe2l1 interactions. Glia. 2013 Sep; 61(9):1518-32. Molofsky AV, Glasgow SM, Chaboub LS, Tsai HH, Murnen AT, Kelley KW, Fancy SP, Yuen TJ, Madireddy L, Baranzini S, Deneen B, Rowitch DH, Oldham MC. PMID: 23840004; PMCID: PMC3909648.
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    Translation:AnimalsCells
  17. Evidence that nuclear factor IA inhibits repair after white matter injury. Ann Neurol. 2012 Aug; 72(2):224-33. Fancy SP, Glasgow SM, Finley M, Rowitch DH, Deneen B. PMID: 22807310; PMCID: PMC3429638.
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    Translation:HumansAnimalsCells
  18. Sox9 and NFIA coordinate a transcriptional regulatory cascade during the initiation of gliogenesis. Neuron. 2012 Apr 12; 74(1):79-94. Kang P, Lee HK, Glasgow SM, Finley M, Donti T, Gaber ZB, Graham BH, Foster AE, Novitch BG, Gronostajski RM, Deneen B. PMID: 22500632; PMCID: PMC3543821.
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    Translation:HumansAnimalsCells
  19. Neurog2 is a direct downstream target of the Ptf1a-Rbpj transcription complex in dorsal spinal cord. Development. 2009 Sep; 136(17):2945-54. Henke RM, Savage TK, Meredith DM, Glasgow SM, Hori K, Dumas J, MacDonald RJ, Johnson JE. PMID: 19641016; PMCID: PMC2723066.
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    Translation:HumansAnimalsCells
  20. A nonclassical bHLH Rbpj transcription factor complex is required for specification of GABAergic neurons independent of Notch signaling. Genes Dev. 2008 Jan 15; 22(2):166-78. Hori K, Cholewa-Waclaw J, Nakada Y, Glasgow SM, Masui T, Henke RM, Wildner H, Martarelli B, Beres TM, Epstein JA, Magnuson MA, Macdonald RJ, Birchmeier C, Johnson JE. PMID: 18198335; PMCID: PMC2192752.
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    Translation:AnimalsCells
  21. Ptf1a determines GABAergic over glutamatergic neuronal cell fate in the spinal cord dorsal horn. Development. 2005 Dec; 132(24):5461-9. Glasgow SM, Henke RM, Macdonald RJ, Wright CV, Johnson JE. PMID: 16291784.
    View in: PubMed Mentions: 125 Fields:
    Translation:AnimalsCells

This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.

This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.

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