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SUMO1 Affects Synaptic Function, Spine Density and Memory
by
Raught, Brian
, Hazrati, Lili-Naz
, Srikumar, Tharan
, Sakurai, Mikako
, Katayama, Taiichi
, Matsuzaki, Shinsuke
, Knock, Erin
, Fraser, Paul E.
, Staniszewski, Agnieszka
, Lee, Linda
, Arancio, Ottavio
in
13
/ 631/378/1689/364
/ 692/617/375/132/1283
/ Age
/ Animals
/ Brain - growth & development
/ Brain - metabolism
/ Cells, Cultured
/ Cytoskeleton
/ Humanities and Social Sciences
/ Immunoprecipitation
/ Learning
/ Memory
/ Mice
/ Mice, Transgenic
/ Molecular weight
/ multidisciplinary
/ Neurodegeneration
/ Neurons - metabolism
/ Proteins
/ Proteomics
/ Rodents
/ Science
/ Spine
/ SUMO protein
/ SUMO-1 Protein - genetics
/ SUMO-1 Protein - metabolism
/ Sumoylation - genetics
/ Synaptic density
/ Synaptic transmission
/ Synaptic Transmission - genetics
/ Synaptotagmin
/ Synaptotagmin I - metabolism
/ Transgenic mice
/ Ubiquitin
2015
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SUMO1 Affects Synaptic Function, Spine Density and Memory
by
Raught, Brian
, Hazrati, Lili-Naz
, Srikumar, Tharan
, Sakurai, Mikako
, Katayama, Taiichi
, Matsuzaki, Shinsuke
, Knock, Erin
, Fraser, Paul E.
, Staniszewski, Agnieszka
, Lee, Linda
, Arancio, Ottavio
in
13
/ 631/378/1689/364
/ 692/617/375/132/1283
/ Age
/ Animals
/ Brain - growth & development
/ Brain - metabolism
/ Cells, Cultured
/ Cytoskeleton
/ Humanities and Social Sciences
/ Immunoprecipitation
/ Learning
/ Memory
/ Mice
/ Mice, Transgenic
/ Molecular weight
/ multidisciplinary
/ Neurodegeneration
/ Neurons - metabolism
/ Proteins
/ Proteomics
/ Rodents
/ Science
/ Spine
/ SUMO protein
/ SUMO-1 Protein - genetics
/ SUMO-1 Protein - metabolism
/ Sumoylation - genetics
/ Synaptic density
/ Synaptic transmission
/ Synaptic Transmission - genetics
/ Synaptotagmin
/ Synaptotagmin I - metabolism
/ Transgenic mice
/ Ubiquitin
2015
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SUMO1 Affects Synaptic Function, Spine Density and Memory
by
Raught, Brian
, Hazrati, Lili-Naz
, Srikumar, Tharan
, Sakurai, Mikako
, Katayama, Taiichi
, Matsuzaki, Shinsuke
, Knock, Erin
, Fraser, Paul E.
, Staniszewski, Agnieszka
, Lee, Linda
, Arancio, Ottavio
in
13
/ 631/378/1689/364
/ 692/617/375/132/1283
/ Age
/ Animals
/ Brain - growth & development
/ Brain - metabolism
/ Cells, Cultured
/ Cytoskeleton
/ Humanities and Social Sciences
/ Immunoprecipitation
/ Learning
/ Memory
/ Mice
/ Mice, Transgenic
/ Molecular weight
/ multidisciplinary
/ Neurodegeneration
/ Neurons - metabolism
/ Proteins
/ Proteomics
/ Rodents
/ Science
/ Spine
/ SUMO protein
/ SUMO-1 Protein - genetics
/ SUMO-1 Protein - metabolism
/ Sumoylation - genetics
/ Synaptic density
/ Synaptic transmission
/ Synaptic Transmission - genetics
/ Synaptotagmin
/ Synaptotagmin I - metabolism
/ Transgenic mice
/ Ubiquitin
2015
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Journal Article
SUMO1 Affects Synaptic Function, Spine Density and Memory
2015
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Overview
Small ubiquitin-like modifier-1 (SUMO1) plays a number of roles in cellular events and recent evidence has given momentum for its contributions to neuronal development and function. Here, we have generated a SUMO1 transgenic mouse model with exclusive overexpression in neurons in an effort to identify
in vivo
conjugation targets and the functional consequences of their SUMOylation. A high-expressing line was examined which displayed elevated levels of mono-SUMO1 and increased high molecular weight conjugates in all brain regions. Immunoprecipitation of SUMOylated proteins from total brain extract and proteomic analysis revealed ~95 candidate proteins from a variety of functional classes, including a number of synaptic and cytoskeletal proteins. SUMO1 modification of synaptotagmin-1 was found to be elevated as compared to non-transgenic mice. This observation was associated with an age-dependent reduction in basal synaptic transmission and impaired presynaptic function as shown by altered paired pulse facilitation, as well as a decrease in spine density. The changes in neuronal function and morphology were also associated with a specific impairment in learning and memory while other behavioral features remained unchanged. These findings point to a significant contribution of SUMO1 modification on neuronal function which may have implications for mechanisms involved in mental retardation and neurodegeneration.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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