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SPIN90 Modulates Long-Term Depression and Behavioral Flexibility in the Hippocampus.
Kim, Dae Hwan; Kang, Minkyung; Kim, Chong-Hyun; Huh, Yun Hyun; Cho, In Ha; Ryu, Hyun-Hee; Chung, Kyung Hwun; Park, Chul-Seung; Rhee, Sangmyung; Lee, Yong-Seok; Song, Woo Keun.
Afiliação
  • Kim DH; Bio Imaging and Cell Logistics Research Center, School of Life Sciences, Gwangju Institute of Science and TechnologyGwangju, South Korea.
  • Kang M; Department of Physiology, Department of Biomedical Sciences, Seoul National University College of MedicineSeoul, South Korea.
  • Kim CH; Center for Neuroscience, Korea Institute of Science and Technology, Division of Bio-Medical Science and Technology, KIST School, Korea University of Science and TechnologySeoul, South Korea.
  • Huh YH; Bio Imaging and Cell Logistics Research Center, School of Life Sciences, Gwangju Institute of Science and TechnologyGwangju, South Korea.
  • Cho IH; Department of Biological Sciences, Dartmouth CollegeHanover, NH, United States.
  • Ryu HH; Department of Physiology, Department of Biomedical Sciences, Seoul National University College of MedicineSeoul, South Korea.
  • Chung KH; Department of Life Science, Chung-Ang UniversitySeoul, South Korea.
  • Park CS; Electron Microscope Facility, Dental Research Institute, Seoul National UniversitySeoul, South Korea.
  • Rhee S; School of Life Sciences, Gwangju Institute of Science and TechnologyGwangju, South Korea.
  • Lee YS; Department of Life Science, Chung-Ang UniversitySeoul, South Korea.
  • Song WK; Department of Physiology, Department of Biomedical Sciences, Seoul National University College of MedicineSeoul, South Korea.
Front Mol Neurosci ; 10: 295, 2017.
Article em En | MEDLINE | ID: mdl-28979184
The importance of actin-binding proteins (ABPs) in the regulation of synapse morphology and plasticity has been well established. SH3 protein interacting with Nck, 90 kDa (SPIN90), an Nck-interacting protein highly expressed in synapses, is essential for actin remodeling and dendritic spine morphology. Synaptic targeting of SPIN90 to spine heads or dendritic shafts depends on its phosphorylation state, leading to blockage of cofilin-mediated actin depolymerization and spine shrinkage. However, the physiological role of SPIN90 in long-term plasticity, learning and memory are largely unknown. In this study, we demonstrate that Spin90-knockout (KO) mice exhibit substantial deficits in synaptic plasticity and behavioral flexibility. We found that loss of SPIN90 disrupted dendritic spine density in CA1 neurons of the hippocampus and significantly impaired long-term depression (LTD), leaving basal synaptic transmission and long-term potentiation (LTP) intact. These impairments were due in part to deficits in AMPA receptor endocytosis and its pre-requisites, GluA1 dephosphorylation and postsynaptic density (PSD) 95 phosphorylation, but also by an intrinsic activation of Akt-GSK3ß signaling as a result of Spin90-KO. In accordance with these defects, mice lacking SPIN90 were found to carry significant deficits in object-recognition and behavioral flexibility, while learning ability was largely unaffected. Collectively, these findings demonstrate a novel modulatory role for SPIN90 in hippocampal LTD and behavioral flexibility.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Coréia do Sul

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Coréia do Sul