Mechanical regulation of synapse formation and plasticity

被引:19
|
作者
Minegishi, Takunori [1 ]
Kastian, Ria Fajarwati [1 ,2 ]
Inagaki, Naoyuki [1 ]
机构
[1] Nara Inst Sci & Technol, Div Biol Sci, Lab Syst Neurobiol & Med, Ikoma, Nara 6300192, Japan
[2] Res Ctr Genet Engn, Natl Res & Innovat Agcy Republ Indonesia, Cibinong, Bogor, Indonesia
关键词
Synaptic plasticity; BAR -domain protein; Shootin1; Cadherin; L1; Laminin; DENDRITIC SPINE GEOMETRY; LONG-TERM POTENTIATION; PROTEIN-KINASE-II; F-BAR DOMAIN; STRUCTURAL PLASTICITY; ACTIN CYTOSKELETON; EXTRACELLULAR-MATRIX; SEPTIN CYTOSKELETON; ADHESION MOLECULES; INTEGRIN SUBUNIT;
D O I
10.1016/j.semcdb.2022.05.017
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Dendritic spines are small protrusions arising from dendrites and constitute the major compartment of excitatory post-synapses. They change in number, shape, and size throughout life; these changes are thought to be asso-ciated with formation and reorganization of neuronal networks underlying learning and memory. As spines in the brain are surrounded by the microenvironment including neighboring cells and the extracellular matrix, their protrusion requires generation of force to push against these structures. In turn, neighboring cells receive force from protruding spines. Recent studies have identified BAR-domain proteins as being involved in membrane deformation to initiate spine formation. In addition, forces for dendritic filopodium extension and activity -induced spine expansion are generated through cooperation between actin polymerization and clutch coupling. On the other hand, force from expanding spines affects neurotransmitter release from presynaptic terminals. Here, we review recent advances in our understanding of the physical aspects of synapse formation and plasticity, mainly focusing on spine dynamics.
引用
收藏
页码:82 / 89
页数:8
相关论文
共 50 条
  • [1] Ephrin regulation of synapse formation, function and plasticity
    Hruska, Martin
    Dalva, Matthew B.
    MOLECULAR AND CELLULAR NEUROSCIENCE, 2012, 50 (01) : 35 - 44
  • [2] DIFFERENTIAL REGULATION OF SYNAPSE FORMATION AND PLASTICITY BY GluRδ2 IN THE CEREBELLUM
    Kakegawa, Wataru
    Miyazaki, Taisuke
    Kohda, Kazuhisa
    Matsuda, Keiko
    Emi, Kyoichi
    Motohashi, Junko
    Watanabe, Masahiko
    Yuzaki, Michisuke
    JOURNAL OF PHYSIOLOGICAL SCIENCES, 2009, 59 : 135 - 135
  • [3] Role of NGL-3 in the regulation of synapse formation and synaptic plasticity
    Kim, E.
    Lee, H.
    Lee, E. -J.
    Shin, W.
    JOURNAL OF NEUROCHEMISTRY, 2015, 134 : 48 - 48
  • [4] Neurotrophic regulation of synapse development and plasticity
    鲁白
    ProgressinNaturalScience, 2001, (01) : 3 - 7
  • [5] Neurotrophic regulation of synapse development and plasticity
    Lu, B
    PROGRESS IN NATURAL SCIENCE, 2001, 11 (01) : 1 - 5
  • [6] Guidance Molecules in Synapse Formation and Plasticity
    Shen, Kang
    Cowan, Christopher W.
    COLD SPRING HARBOR PERSPECTIVES IN BIOLOGY, 2010, 2 (04): : a001842
  • [7] Regulation of GABAergic synapse formation and plasticity by GSK3β-dependent phosphorylation of gephyrin
    Tyagarajan, Shiva K.
    Ghosh, Himanish
    Yevenes, Gonzalo E.
    Nikonenko, Irina
    Ebeling, Claire
    Schwerdel, Cornelia
    Sidler, Corinne
    Zeilhofer, Hanns Ulrich
    Gerrits, Bertran
    Muller, Dominique
    Fritschy, Jean-Marc
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2011, 108 (01) : 379 - 384
  • [8] The Emerging Role of Mechanics in Synapse Formation and Plasticity
    Kilinc, Devrim
    FRONTIERS IN CELLULAR NEUROSCIENCE, 2018, 12
  • [9] Plasticity mechanism and memory formation in the chemical synapse
    Yao, Zhao
    Sun, Kehui
    He, Shaobo
    NONLINEAR DYNAMICS, 2023, 111 (20) : 19411 - 19423
  • [10] Plasticity mechanism and memory formation in the chemical synapse
    Zhao Yao
    Kehui Sun
    Shaobo He
    Nonlinear Dynamics, 2023, 111 : 19411 - 19423