Enhancement of Inhibitory Neurotransmission by GABA A Receptors Having α 2,3 -Subunits Ameliorates Behavioral Deficits in a Mouse Model of Autism DOI Creative Commons
Sung Han,

Chao Tai,

Christina Jones

et al.

Neuron, Journal Year: 2014, Volume and Issue: 81(6), P. 1282 - 1289

Published: March 1, 2014

Language: Английский

FOXG1-Dependent Dysregulation of GABA/Glutamate Neuron Differentiation in Autism Spectrum Disorders DOI Creative Commons
Jessica Mariani, Gianfilippo Coppola, Ping Zhang

et al.

Cell, Journal Year: 2015, Volume and Issue: 162(2), P. 375 - 390

Published: July 1, 2015

Language: Английский

Citations

1038

Loss of mTOR-Dependent Macroautophagy Causes Autistic-like Synaptic Pruning Deficits DOI Creative Commons
Guomei Tang, Kathryn Gudsnuk, Sheng‐Han Kuo

et al.

Neuron, Journal Year: 2014, Volume and Issue: 83(5), P. 1131 - 1143

Published: Aug. 21, 2014

Language: Английский

Citations

987

Activity-dependent neuronal signalling and autism spectrum disorder DOI

Daniel H. Ebert,

Michael E. Greenberg

Nature, Journal Year: 2013, Volume and Issue: 493(7432), P. 327 - 337

Published: Jan. 15, 2013

Language: Английский

Citations

621

The Postsynaptic Organization of Synapses DOI Open Access
Morgan Sheng, Eunjin Kim

Cold Spring Harbor Perspectives in Biology, Journal Year: 2011, Volume and Issue: 3(12), P. a005678 - a005678

Published: Nov. 1, 2011

Morgan Sheng1 and Eunjoon Kim2 The Department of Neuroscience, Genentech Incorporated, San Francisco, California 94080 Biological Sciences, Korea Advanced Institute Science Technology, Daejeon 305-701, Correspondence: kime{at}kaist.ac.kr

Language: Английский

Citations

522

From neural development to cognition: unexpected roles for chromatin DOI

Jehnna L. Ronan,

Wei Wu, Robert H. Crabtree

et al.

Nature Reviews Genetics, Journal Year: 2013, Volume and Issue: 14(5), P. 347 - 359

Published: April 9, 2013

Language: Английский

Citations

517

Autism-Associated Neuroligin-3 Mutations Commonly Impair Striatal Circuits to Boost Repetitive Behaviors DOI Creative Commons
Patrick E. Rothwell, Marc V. Fuccillo, Stephan Maxeiner

et al.

Cell, Journal Year: 2014, Volume and Issue: 158(1), P. 198 - 212

Published: July 1, 2014

Language: Английский

Citations

462

Gene hunting in autism spectrum disorder: on the path to precision medicine DOI
Daniel H. Geschwind, Matthew W. State

The Lancet Neurology, Journal Year: 2015, Volume and Issue: 14(11), P. 1109 - 1120

Published: April 17, 2015

Language: Английский

Citations

453

Excitation/Inhibition Imbalance in Animal Models of Autism Spectrum Disorders DOI Creative Commons
Eunee Lee, Jiseok Lee, Eunjoon Kim

et al.

Biological Psychiatry, Journal Year: 2016, Volume and Issue: 81(10), P. 838 - 847

Published: May 22, 2016

Imbalances between excitation and inhibition in synaptic transmission neural circuits have been implicated autism spectrum disorders. Excitation imbalances are frequently observed animal models of disorders, their correction normalizes key autistic-like phenotypes these animals. These results suggest that may contribute to the development maintenance disorders represent an important therapeutic target.

Language: Английский

Citations

435

Deficient autophagy in microglia impairs synaptic pruning and causes social behavioral defects DOI Creative Commons

HJ Kim,

M-H Cho,

Won Heum Shim

et al.

Molecular Psychiatry, Journal Year: 2016, Volume and Issue: 22(11), P. 1576 - 1584

Published: July 12, 2016

Autism spectrum disorders (ASDs) are neurodevelopmental caused by various genetic and environmental factors that result in synaptic abnormalities. ASD development is suggested to involve microglia, which have a role refinement during development. Autophagy related pathways also be involved ASDs. However, the precise roles of microglial autophagy synapses ASDs unknown. Here, we show neurobehavior regulation. We found deletion atg7, vital for autophagy, from myeloid cell-specific lysozyme M-Cre mice resulted social behavioral defects repetitive behaviors, characteristic features These had increases dendritic spines markers altered connectivity between brain regions, indicating refinement. Synaptosome degradation was impaired atg7-deficient microglia immature filopodia were increased neurons co-cultured with microglia. To our knowledge, results first regulation synapse neurobehaviors. anticipate starting point more comprehensive studies putative therapeutics.

Language: Английский

Citations

405

Changes in the Synaptic Proteome in Tauopathy and Rescue of Tau-Induced Synapse Loss by C1q Antibodies DOI Creative Commons
Borislav Dejanovic, Melanie A. Huntley, Ann De Mazière

et al.

Neuron, Journal Year: 2018, Volume and Issue: 100(6), P. 1322 - 1336.e7

Published: Nov. 1, 2018

Language: Английский

Citations

400