Taeho Kim

Affiliations: 
Weill Cornell Medical College, New York, NY, United States 
Area:
Neurotrophin receptor
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"Taeho Kim"
Mean distance: 17.43 (cluster 32)
 
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Barbara L. Hempstead grad student 2004-2009 Weill Cornell Medical College
 (Regulation of proneurotrophin-induced neuronal death and plasticity: Mechanisms of receptor activation and signaling.)
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Publications

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Djurisic M, Vidal GS, Mann M, et al. (2013) PirB regulates a structural substrate for cortical plasticity. Proceedings of the National Academy of Sciences of the United States of America. 110: 20771-6
Kim T, Vidal GS, Djurisic M, et al. (2013) Human LilrB2 is a β-amyloid receptor and its murine homolog PirB regulates synaptic plasticity in an Alzheimer's model. Science (New York, N.Y.). 341: 1399-404
Adelson JD, Barreto GE, Xu L, et al. (2012) Neuroprotection from stroke in the absence of MHCI or PirB. Neuron. 73: 1100-7
Deinhardt K, Kim T, Spellman DS, et al. (2011) Neuronal growth cone retraction relies on proneurotrophin receptor signaling through Rac. Science Signaling. 4: ra82
Evans SF, Irmady K, Ostrow K, et al. (2011) Neuronal brain-derived neurotrophic factor is synthesized in excess, with levels regulated by sortilin-mediated trafficking and lysosomal degradation. The Journal of Biological Chemistry. 286: 29556-67
Teng KK, Felice S, Kim T, et al. (2010) Understanding proneurotrophin actions: Recent advances and challenges. Developmental Neurobiology. 70: 350-9
Feng D, Kim T, Ozkan E, et al. (2010) Molecular and structural insight into proNGF engagement of p75NTR and sortilin. Journal of Molecular Biology. 396: 967-84
Kim T, Hempstead BL. (2009) NRH2 is a trafficking switch to regulate sortilin localization and permit proneurotrophin-induced cell death. The Embo Journal. 28: 1612-23
Riccio A, Alvania RS, Lonze BE, et al. (2006) A nitric oxide signaling pathway controls CREB-mediated gene expression in neurons. Molecular Cell. 21: 283-94
Kash TL, Kim T, Trudell JR, et al. (2004) Evaluation of a proposed mechanism of ligand-gated ion channel activation in the GABAA and glycine receptors. Neuroscience Letters. 371: 230-4
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