Junjie Guo

Affiliations: 
Johns Hopkins University School of Medicine, Baltimore, MD, United States 
Area:
Epigenetics, Neural Plasticity
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"Junjie Guo"
Mean distance: 14.97 (cluster 11)
 
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Parents

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Hongjun Song grad student 2006-2011 Johns Hopkins
 (Activity-dependent regulation of DNA methylation in the adult brain.)
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Publications

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Zeng Y, Yao B, Shin J, et al. (2015) Lin28A Binds Active Promoters and Recruits Tet1 to Regulate Gene Expression. Molecular Cell
Sun J, Bonaguidi MA, Jun H, et al. (2015) A septo-temporal molecular gradient of sfrp3 in the dentate gyrus differentially regulates quiescent adult hippocampal neural stem cell activation. Molecular Brain. 8: 52
Yu H, Su Y, Shin J, et al. (2015) Tet3 regulates synaptic transmission and homeostatic plasticity via DNA oxidation and repair. Nature Neuroscience. 18: 836-43
Guo JU, Szulwach KE, Su Y, et al. (2014) Genome-wide antagonism between 5-hydroxymethylcytosine and DNA methylation in the adult mouse brain. Frontiers in Biology. 9: 66-74
Chang YI, Damnernsawad A, Allen LK, et al. (2014) Evaluation of allelic strength of human TET2 mutations and cooperation between Tet2 knockdown and oncogenic Nras mutation. British Journal of Haematology. 166: 461-5
Guo JU, Su Y, Shin JH, et al. (2014) Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain. Nature Neuroscience. 17: 215-22
Yeo M, Berglund K, Hanna M, et al. (2013) Bisphenol A delays the perinatal chloride shift in cortical neurons by epigenetic effects on the Kcc2 promoter. Proceedings of the National Academy of Sciences of the United States of America. 110: 4315-20
Jang MH, Bonaguidi MA, Kitabatake Y, et al. (2013) Secreted frizzled-related protein 3 regulates activity-dependent adult hippocampal neurogenesis. Cell Stem Cell. 12: 215-23
Felling RJ, Guo JU, Song H. (2012) Neuronal activation and insight into the plasticity of DNA methylation. Epigenomics. 4: 125-7
Kang E, Burdick KE, Kim JY, et al. (2011) Interaction between FEZ1 and DISC1 in regulation of neuronal development and risk for schizophrenia. Neuron. 72: 559-71
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