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Nature Neuroscience|March 11, 2020
A computational tool (H-MAGMA) for improved prediction of brain-disorder risk genes by incorporating brain chromatin interaction profilesNancy Y A Sey, Benxia Hu, Won Mah, et al.Frontiers in Neuroanatomy|January 2, 2024
Increase of glutamate in satellite glial cells of the trigeminal ganglion in a rat model of craniofacial neuropathic painYi Sul Cho, Won Mah, Dong Ho Youn, et al.Nature Communications|June 26, 2021
Neuronal and glial 3D chromatin architecture informs the cellular etiology of brain disordersBenxia Hu, Hyejung Won, Won Mah, et al.Biorxiv : the Preprint Server for Biology|February 23, 2026
Repeat expansions in <i>C9orf72</i> rewire the 3D chromatin landscape in ALSTatiana Ulloa Avila, Jingying Wang, Lydia Adams, et al.Scientific Reports|May 27, 2016
SALM5 trans-synaptically interacts with LAR-RPTPs in a splicing-dependent manner to regulate synapse developmentYeonsoo Choi, Jungyong Nam, Daniel J Whitcomb, et al.Cell Reports|September 1, 2015
Splicing-Dependent Trans-synaptic SALM3-LAR-RPTP Interactions Regulate Excitatory Synapse Development and LocomotionYan Li, Peng Zhang, Tae-Yong Choi, et al.Nature Medicine|April 19, 2011
GIT1 is associated with ADHD in humans and ADHD-like behaviors in miceHyejung Won, Won Mah, Eunjin Kim, et al.Nature|June 16, 2012
Autistic-like social behaviour in Shank2-mutant mice improved by restoring NMDA receptor functionHyejung Won, Hye-Ryeon Lee, Heon Yung Gee, et al.Nature Communications|August 3, 2016
SALM4 suppresses excitatory synapse development by cis-inhibiting trans-synaptic SALM3-LAR adhesionEunkyung Lie, Ji Seung Ko, Su-Yeon Choi, et al.Nature Neuroscience|November 24, 2015
Synaptic adhesion molecule IgSF11 regulates synaptic transmission and plasticitySeil Jang, Daeyoung Oh, Yeunkum Lee, et al.Pageof 3