MicroRNA networks direct neuronal development and plasticity

被引:0
|
作者
N. F. M. Olde Loohuis
A. Kos
G. J. M. Martens
H. Van Bokhoven
N. Nadif Kasri
A. Aschrafi
机构
[1] Radboud University Nijmegen,Department of Cognitive Neuroscience
[2] Radboud University Nijmegen,Department of Human Genetics
[3] Radboud University Nijmegen,Department of Molecular Animal Physiology
来源
关键词
MicroRNA; Neuronal development; Synapse; Learning and memory; Neurological diseases;
D O I
暂无
中图分类号
学科分类号
摘要
MicroRNAs (miRNAs) constitute a class of small, non-coding RNAs that act as post-transcriptional regulators of gene expression. In neurons, the functions of individual miRNAs are just beginning to emerge, and recent studies have elucidated roles for neural miRNAs at various stages of neuronal development and maturation, including neurite outgrowth, dendritogenesis, and spine formation. Notably, miRNAs regulate mRNA translation locally in the axosomal and synaptodendritic compartments, and thereby contribute to the dynamic spatial organization of axonal and dendritic structures and their function. Given the critical role for miRNAs in regulating early brain development and in mediating synaptic plasticity later in life, it is tempting to speculate that the pathology of neurological disorders is affected by altered expression or functioning of miRNAs. Here we provide an overview of recently identified mechanisms of neuronal development and plasticity involving miRNAs, and the consequences of miRNA dysregulation.
引用
收藏
页码:89 / 102
页数:13
相关论文
共 50 条
  • [21] The growing role of mTOR in neuronal development and plasticity
    Jaworski, Jacek
    Sheng, Morgan
    MOLECULAR NEUROBIOLOGY, 2006, 34 (03) : 205 - 219
  • [22] Imaging the Development and Plasticity of Prefrontal Neuronal Circuits
    Wang, Kuan Hong
    BIOLOGICAL PSYCHIATRY, 2009, 65 (08) : 1S - 1S
  • [23] GANGLIOSIDE EFFECTS ON NEURONAL PLASTICITY DURING DEVELOPMENT
    KARPIAK, S
    VILIM, F
    MAHADIK, SP
    NEUROTOXICOLOGY, 1986, 7 (01) : 350 - 350
  • [24] Protein palmitoylation in the development and plasticity of neuronal connections
    Globa, Andrea K.
    Bamji, Shernaz X.
    CURRENT OPINION IN NEUROBIOLOGY, 2017, 45 : 210 - 220
  • [25] The growing role of mTOR in neuronal development and plasticity
    Jacek Jaworski
    Morgan Sheng
    Molecular Neurobiology, 2006, 34 : 205 - 219
  • [26] Protein palmitoylation in neuronal development and synaptic plasticity
    Yuko Fukata
    Masaki Fukata
    Nature Reviews Neuroscience, 2010, 11 : 161 - 175
  • [27] Mitochondrial dynamics in neuronal injury, development and plasticity
    Flippo, Kyle H.
    Strack, Stefan
    JOURNAL OF CELL SCIENCE, 2017, 130 (04) : 671 - 681
  • [28] Microtubule Dynamics in Neuronal Development, Plasticity, and Neurodegeneration
    Penazzi, Lorene
    Bakota, Lidia
    Brandt, Roland
    INTERNATIONAL REVIEW OF CELL AND MOLECULAR BIOLOGY, VOL 321, 2016, 321 : 89 - 169
  • [29] Protein palmitoylation in neuronal development and synaptic plasticity
    Fukata, Yuko
    Fukata, Masaki
    NATURE REVIEWS NEUROSCIENCE, 2010, 11 (03) : 161 - 175
  • [30] Collective plasticity and individual stability in cultured neuronal networks
    Raichman, Nadav
    Volman, Vladislav
    Ben-Jacob, Eshel
    NEUROCOMPUTING, 2006, 69 (10-12) : 1150 - 1154