Min Jeong Kye

Affiliations: 
University of Cologne, Köln, Nordrhein-Westfalen, Germany 
Area:
microRNA, local translation, neurodegeneration
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"Min Jeong Kye"
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Publications

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Gonçalves IDCG, Brecht J, Thelen MP, et al. (2018) Author Correction: Neuronal activity regulates DROSHA via autophagy in spinal muscular atrophy. Scientific Reports. 8: 10294
Janzen E, Mendoza-Ferreira N, Hosseinibarkooie S, et al. (2018) CHP1 reduction ameliorates spinal muscular atrophy pathology by restoring calcineurin activity and endocytosis. Brain : a Journal of Neurology
Gonçalves IDCG, Brecht J, Thelen MP, et al. (2018) Neuronal activity regulates DROSHA via autophagy in spinal muscular atrophy. Scientific Reports. 8: 7907
Riessland M, Kaczmarek A, Schneider S, et al. (2017) Neurocalcin Delta Suppression Protects against Spinal Muscular Atrophy in Humans and across Species by Restoring Impaired Endocytosis. American Journal of Human Genetics
Hosseinibarkooie S, Peters M, Torres-Benito L, et al. (2016) The Power of Human Protective Modifiers: PLS3 and CORO1C Unravel Impaired Endocytosis in Spinal Muscular Atrophy and Rescue SMA Phenotype. American Journal of Human Genetics
Kye MJ, Niederst ED, Wertz MH, et al. (2014) SMN regulates axonal local translation via miR-183/mTOR pathway. Human Molecular Genetics. 23: 6318-31
Dimitriadi M, Kye MJ, Kalloo G, et al. (2013) The neuroprotective drug riluzole acts via small conductance Ca2+-activated K+ channels to ameliorate defects in spinal muscular atrophy models. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 6557-62
Weeraratne SD, Amani V, Teider N, et al. (2012) Pleiotropic effects of miR-183~96~182 converge to regulate cell survival, proliferation and migration in medulloblastoma. Acta Neuropathologica. 123: 539-52
Kye MJ, Neveu P, Lee YS, et al. (2011) NMDA mediated contextual conditioning changes miRNA expression. Plos One. 6: e24682
Akten B, Kye MJ, Hao le T, et al. (2011) Interaction of survival of motor neuron (SMN) and HuD proteins with mRNA cpg15 rescues motor neuron axonal deficits. Proceedings of the National Academy of Sciences of the United States of America. 108: 10337-42
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