Literature DB >> 25040546

The Neuroplastin adhesion molecules: key regulators of neuronal plasticity and synaptic function.

Philip W Beesley1, Rodrigo Herrera-Molina, Karl-Heinz Smalla, Constanze Seidenbecher.   

Abstract

The Neuroplastins Np65 and Np55 are neuronal and synapse-enriched immunoglobulin superfamily molecules that play important roles in a number of key neuronal and synaptic functions including, for Np65, cell adhesion. In this review we focus on the physiological roles of the Neuroplastins in promoting neurite outgrowth, regulating the structure and function of both inhibitory and excitatory synapses in brain, and in neuronal and synaptic plasticity. We discuss the underlying molecular and cellular mechanisms by which the Neuroplastins exert their physiological effects and how these are dependent upon the structural features of Np65 and Np55, which enable them to bind to a diverse range of protein partners. In turn this enables the Neuroplastins to interact with a number of key neuronal signalling cascades. These include: binding to and activation of the fibroblast growth factor receptor; Np65 trans-homophilic binding leading to activation of p38 MAPK and internalization of glutamate (GluR1) receptor subunits; acting as accessory proteins for monocarboxylate transporters, thus affecting neuronal energy supply, and binding to GABAA α1, 2 and 5 subunits, thus regulating the composition and localization of GABAA receptors. An emerging theme is the role of the Neuroplastins in regulating the trafficking and subcellular localization of specific binding partners. We also discuss the involvement of Neuroplastins in a number of pathophysiological conditions, including ischaemia, schizophrenia and breast cancer and the role of a single nucleotide polymorphism in the human Neuroplastin (NPTN) gene locus in impairment of cortical development and cognitive functions. Neuroplastins are neuronal cell adhesion molecules, which induce neurite outgrowth and play important roles in synaptic maturation and plasticity. This review summarizes the functional implications of Neuroplastins for correct synaptic membrane protein localization, neuronal energy supply, expression of LTP and LTD, animal and human behaviour, and pathophysiology and disease. It focuses particularly on Neuroplastin binding partners and signalling mechanisms, and proposes perspectives for future research on these important immunoglobulin superfamily members.
© 2014 International Society for Neurochemistry.

Entities:  

Keywords:  GABA receptors; immunoglobulin superfamily; long-term potentiation; monocarboxylate transporter; neurite outgrowth; postsynaptic density

Mesh:

Substances:

Year:  2014        PMID: 25040546     DOI: 10.1111/jnc.12816

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  32 in total

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4.  Changes in Synaptic Proteins Precede Neurodegeneration Markers in Preclinical Alzheimer's Disease Cerebrospinal Fluid.

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Journal:  Mol Cell Proteomics       Date:  2019-01-03       Impact factor: 5.911

5.  The amino-terminal domain of GluA1 mediates LTP maintenance via interaction with neuroplastin-65.

Authors:  Chao-Hua Jiang; Mengping Wei; Chen Zhang; Yun Stone Shi
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9.  Absence of Neuroplastin-65 Affects Synaptogenesis in Mouse Inner Hair Cells and Causes Profound Hearing Loss.

Authors:  Leanne Carrott; Michael R Bowl; Carlos Aguilar; Stuart L Johnson; Lauren Chessum; Melissa West; Susan Morse; Joanne Dorning; Elizabeth Smart; Rachel Hardisty-Hughes; Greg Ball; Andrew Parker; Alun R Barnard; Robert E MacLaren; Sara Wells; Walter Marcotti; Steve D M Brown
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Review 10.  Neuroplastin in human cognition: review of literature and future perspectives.

Authors:  Katarina Ilic; Kristina Mlinac-Jerkovic; Goran Sedmak; Ivana Rosenzweig; Svjetlana Kalanj-Bognar
Journal:  Transl Psychiatry       Date:  2021-07-16       Impact factor: 6.222

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