Matthew Bonser Johnson

Affiliations: 
Harvard University, Cambridge, MA, United States 
Area:
cortical development
Website:
http://www.walshlab.org
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"Matthew Johnson"
Mean distance: 14.3 (cluster 11)
 
SNBCP

Parents

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Jerome N. Sanes research assistant 2000-2002 Brown
Nenad Sestan grad student 2004-2009 Yale
 (Functional and evolutionary insights into human brain development through global transcriptome analysis.)
Chris A. Walsh post-doc 2010- Harvard
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Publications

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Girskis KM, Stergachis AB, DeGennaro EM, et al. (2021) Rewiring of human neurodevelopmental gene regulatory programs by human accelerated regions. Neuron
Baizabal JM, Mistry M, García MT, et al. (2018) The Epigenetic State of PRDM16-Regulated Enhancers in Radial Glia Controls Cortical Neuron Position. Neuron
Chau KF, Shannon ML, Fame RM, et al. (2018) Downregulation of ribosome biogenesis during early forebrain development. Elife. 7
Johnson MB, Sun X, Kodani A, et al. (2018) Aspm knockout ferret reveals an evolutionary mechanism governing cerebral cortical size. Nature
Chau KF, Shannon ML, Fame RM, et al. (2018) Author response: Downregulation of ribosome biogenesis during early forebrain development Elife
Craft AM, Johnson M. (2017) From stem cells to human development: a distinctly human perspective on early embryology, cellular differentiation and translational research. Development (Cambridge, England). 144: 12-16
Johnson MB, Walsh CA. (2016) Cerebral cortical neuron diversity and development at single-cell resolution. Current Opinion in Neurobiology. 42: 9-16
Lun MP, Johnson MB, Broadbelt KG, et al. (2015) Spatially heterogeneous choroid plexus transcriptomes encode positional identity and contribute to regional CSF production. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 4903-16
Johnson MB, Wang PP, Atabay KD, et al. (2015) Single-cell analysis reveals transcriptional heterogeneity of neural progenitors in human cortex. Nature Neuroscience. 18: 637-46
Bae BI, Tietjen I, Atabay KD, et al. (2014) Evolutionarily dynamic alternative splicing of GPR56 regulates regional cerebral cortical patterning. Science (New York, N.Y.). 343: 764-8
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