Christopher P. Tzeng
Affiliations: | 2010-2012 | Neuroscience | Baylor College of Medicine, Houston, TX |
2012-2019 | Neurobiology | Harvard Medical School, Boston, MA, United States | |
2019- | Biology | Stanford University & HHMI |
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"Christopher Tzeng"Mean distance: 14.37 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorKimberley Tolias | research assistant | 2010-2012 | Baylor College of Medicine |
Michael E. Greenberg | grad student | 2012-2019 | Harvard Medical School |
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Publications
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Tzeng CP, Whitwam T, Boxer LD, et al. (2023) Activity-induced MeCP2 phosphorylation regulates retinogeniculate synapse refinement. Proceedings of the National Academy of Sciences of the United States of America. 120: e2310344120 |
Tzeng CP, Shen K. (2023) Wnt signaling and contact-mediated repulsion shape sensory dendritic fields. Biorxiv : the Preprint Server For Biology |
Land R, Fetter R, Liang X, et al. (2023) Endoplasmic Reticulum Exit Sites scale with somato-dendritic size in neurons. Molecular Biology of the Cell. mbcE23030090 |
Tzeng CP, Whitwam T, Boxer LD, et al. (2023) Activity-Induced MeCP2 Phosphorylation Regulates Retinogeniculate Synapse Refinement. Biorxiv : the Preprint Server For Biology |
Hrvatin S, Tzeng CP, Nagy MA, et al. (2019) A scalable platform for the development of cell-type-specific viral drivers. Elife. 8 |
Duman JG, Mulherkar S, Tu YK, et al. (2019) The adhesion-GPCR BAI1 shapes dendritic arbors via Bcr-mediated RhoA activation causing late growth arrest. Elife. 8 |
Hrvatin S, Tzeng CP, Nagy MA, et al. (2019) Author response: A scalable platform for the development of cell-type-specific viral drivers Elife |
Cheadle L, Tzeng CP, Kalish BT, et al. (2018) Visual Experience-Dependent Expression of Fn14 Is Required for Retinogeniculate Refinement. Neuron |
Mardinly AR, Spiegel I, Patrizi A, et al. (2016) Sensory experience regulates cortical inhibition by inducing IGF1 in VIP neurons. Nature |
Spiegel I, Mardinly AR, Gabel HW, et al. (2014) Npas4 regulates excitatory-inhibitory balance within neural circuits through cell-type-specific gene programs. Cell. 157: 1216-29 |