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Reduced SNAP-25 increases PSD-95 mobility and impairs spine morphogenesis
G. Fossati
, R. Morini
, I. Corradini
, F. Antonucci
, P. Trepte
, E. Edry
, V. Sharma
, A. Papale
, D. Pozzi
, P. Defilippi
, J. C. Meier
, R. Brambilla
, E. Turco
,
K. Rosenblum
, E. E. Wanker
, N. E. Ziv
, E. Menna
, M. Matteoli
Department of Neurobiology
Research output
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Article
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peer-review
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Neuroscience
Synaptosomal Associated Protein 25
100%
Vertebral Column
100%
Morphogenesis
100%
Postsynaptic Density Protein 95
100%
In Vivo
11%
Long-Term Potentiation
11%
Brain Areas
11%
Brain Slice
11%
Dendritic Spine
11%
Postsynaptic Function
11%
SNARE (Protein)
11%
Genetics
11%
Psychopathology
11%
Schizophrenia
11%
Hippocampal Region
11%
Keyphrases
Postsynaptic Density Protein 95 (PSD-95)
100%
Spine Morphogenesis
100%
SNAP-25
100%
P140Cap
22%
Schizophrenia
11%
Hippocampal Neurons
11%
Long-term Potentiation
11%
Parahippocampal Region
11%
Spontaneous Excitatory Postsynaptic Current (sEPSC)
11%
Protein Level
11%
Heterozygous Mice
11%
Psychiatric Patients
11%
Brain Slice
11%
Synaptic Function
11%
Dendritic Spines
11%
Brain Pathology
11%
Reduced Density
11%
Molecular Complexes
11%
SNARE Proteins
11%
Synaptopathy
11%
Brain Areas
11%
Spine numbers
11%