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Colin J. Barnstable

Pennsylvania State University, State College, PA, United States 
Visual system, retina development
"Colin Barnstable"

Chairman, Neural and Behavioral Sciences

Mean distance: 13.93 (cluster 6)
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Hass DT, Barnstable CJ. (2021) Uncoupling proteins in the mitochondrial defense against oxidative stress. Progress in Retinal and Eye Research. 100941
Hass DT, Barnstable CJ. (2019) Cell Autonomous Neuroprotection by the Mitochondrial Uncoupling Protein 2 in a Mouse Model of Glaucoma. Frontiers in Neuroscience. 13: 201
Hass DT, Barnstable CJ. (2019) Mitochondrial Uncoupling Protein 2 Knockout Promotes Mitophagy to Decrease Retinal Ganglion Cell Death in a Mouse Model of Glaucoma. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Xing T, Hass DT, Zhang SS, et al. (2018) The 3-Phosphoinositide-Dependent Protein Kinase 1 Inhibits Rod Photoreceptor Development. Frontiers in Cell and Developmental Biology. 6: 134
Lu AQ, Popova EY, Barnstable CJ. (2017) Activin Signals through SMAD2/3 to Increase Photoreceptor Precursor Yield during Embryonic Stem Cell Differentiation. Stem Cell Reports
Popova EY, Salzberg AC, Yang C, et al. (2017) Identification and prediction of alternative transcription start sites that generate rod photoreceptor-specific transcripts from ubiquitously expressed genes. Plos One. 12: e0179230
Ferreira RC, Popova EY, James J, et al. (2016) Histone deacetylase 1 is essential for rod photoreceptor differentiation by regulating acetylation at histone H3 lysine 9 and histone H4 lysine 12 in the mouse retina. The Journal of Biological Chemistry
Hass DT, Barnstable CJ. (2016) Uncoupling protein 2 in the glial response to stress: implications for neuroprotection. Neural Regeneration Research. 11: 1197-200
Barnstable CJ, Reddy R, Li H, et al. (2016) Mitochondrial Uncoupling Protein 2 (UCP2) Regulates Retinal Ganglion Cell Number and Survival. Journal of Molecular Neuroscience : Mn
Popova EY, Pinzon-Guzman C, Salzberg AC, et al. (2015) LSD1-Mediated Demethylation of H3K4me2 Is Required for the Transition from Late Progenitor to Differentiated Mouse Rod Photoreceptor. Molecular Neurobiology
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