Literature DB >> 11404404

A labile component of AMPA receptor-mediated synaptic transmission is dependent on microtubule motors, actin, and N-ethylmaleimide-sensitive factor.

C H Kim1, J E Lisman.   

Abstract

Glutamate receptor channels are synthesized in the cell body, are inserted into intracellular vesicles, and move to dendrites where they become incorporated into synapses. Dendrites contain abundant microtubules that have been implicated in the vesicle-mediated transport of ion channels. We have examined how the inhibition of microtubule motors affects synaptic transmission. Monoclonal antibodies that inactivate the function of dynein or kinesin were introduced into hippocampal CA1 pyramidal cells through a patch pipette. Both antibodies substantially reduced the AMPA receptor-mediated responses within 1 hr but had no effect on the NMDA receptor-mediated response. Heat-inactivated antibody or control antibodies had a much smaller effect. A component of transmission appeared to be resistant even to the combination of these inhibitors, and we therefore explored whether other agents also produce only a partial inhibition of transmission. A similar resistant component was found by using an actin inhibitor (phalloidin) or an inhibitor of NSF (N-ethylmaleimide-sensitive fusion protein)/GluR2 interaction. We then examined whether these effects were independent or occluded each other. We found that a combination of phalloidin and NSF/GluR2 inhibitor reduced the response to approximately 30% of baseline level, an effect only slightly larger than that produced by each agent alone. The addition of microtubule motor inhibitors to this combination produced no further inhibition. We conclude that there are two components of AMPA receptor-mediated transmission; one is a labile pool sensitive to NSF/GluR2 inhibitors, actin inhibitors, and microtubule motor inhibitors. A second, nonlabile pool resembles NMDA receptor channels in being nearly insensitive to any of these agents on the hour time scale of our experiments.

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Year:  2001        PMID: 11404404      PMCID: PMC6762774     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  54 in total

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Authors:  J H Kim; R L Huganir
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Authors:  S Karki; E L Holzbaur
Journal:  Curr Opin Cell Biol       Date:  1999-02       Impact factor: 8.382

Review 3.  The role of microtubule-based motor proteins in maintaining the structure and function of the Golgi complex.

Authors:  J K Burkhardt
Journal:  Biochim Biophys Acta       Date:  1998-08-14

Review 4.  Cytoskeletal proteins and Golgi dynamics.

Authors:  J Lippincott-Schwartz
Journal:  Curr Opin Cell Biol       Date:  1998-02       Impact factor: 8.382

Review 5.  Kinesin and dynein superfamily proteins and the mechanism of organelle transport.

Authors:  N Hirokawa
Journal:  Science       Date:  1998-01-23       Impact factor: 47.728

6.  Affinity chromatography demonstrates a direct binding between cytoplasmic dynein and the dynactin complex.

Authors:  S Karki; E L Holzbaur
Journal:  J Biol Chem       Date:  1995-12-01       Impact factor: 5.157

Review 7.  Vesicle transport: the role of actin filaments and myosin motors.

Authors:  A S DePina; G M Langford
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8.  The segregation and expression of glutamate receptor subunits in cultured hippocampal neurons.

Authors:  N Eshhar; R S Petralia; C A Winters; A S Niedzielski; R J Wenthold
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10.  Dynactin, a conserved, ubiquitously expressed component of an activator of vesicle motility mediated by cytoplasmic dynein.

Authors:  S R Gill; T A Schroer; I Szilak; E R Steuer; M P Sheetz; D W Cleveland
Journal:  J Cell Biol       Date:  1991-12       Impact factor: 10.539

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  44 in total

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5.  Modeling the role of lateral membrane diffusion in AMPA receptor trafficking along a spiny dendrite.

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6.  Microtubule Dynamicity Is More Important than Stability in Memory Formation: an In Vivo Study.

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7.  Regulation of AMPA receptor channels and synaptic plasticity by cofilin phosphatase Slingshot in cortical neurons.

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9.  The vasoactive peptide urotensin II stimulates spontaneous release from frog motor nerve terminals.

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10.  Kinesin-1 regulates synaptic strength by mediating the delivery, removal, and redistribution of AMPA receptors.

Authors:  Frédéric J Hoerndli; Dane A Maxfield; Penelope J Brockie; Jerry E Mellem; Erica Jensen; Rui Wang; David M Madsen; Andres V Maricq
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