Evidence for a satellite secretory pathway in neuronal dendritic spines

Long-term information storage within the brain requires the synthesis of new proteins and their use in synapse-specific modifications [1]. Recently, we demonstrated that translation sites for the local synthesis of integral membrane and secretory proteins occur within distal dendritic spines [2]. It...

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Published in:Current biology Vol. 11; no. 5; pp. 351 - 355
Main Authors: Pierce, Joseph P, Mayer, Thomas, McCarthy, J.Brian
Format: Journal Article
Language:English
Published: England Elsevier Inc 06-03-2001
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Abstract Long-term information storage within the brain requires the synthesis of new proteins and their use in synapse-specific modifications [1]. Recently, we demonstrated that translation sites for the local synthesis of integral membrane and secretory proteins occur within distal dendritic spines [2]. It remains unresolved, however, whether a complete secretory pathway, including Golgi and trans Golgi network-like membranes, exists near synapses for the local transport and processing of newly synthesized proteins. Here, we report evidence of a satellite secretory pathway in distal dendritic spines and distal dendrites of the mammalian brain. Membranes analogous to early (RER and ERGIC), middle (Golgi cisternae), and late (TGN) secretory pathway compartments are present within dendritic spines and in distal dendrites. Local synthesis, processing, and transport of newly translated integral membrane and secretory proteins may thus provide the molecular basis for synapse-specific modifications during long-term information storage in the brain.
AbstractList Long-term information storage within the brain requires the synthesis of new proteins and their use in synapse-specific modifications [1]. Recently, we demonstrated that translation sites for the local synthesis of integral membrane and secretory proteins occur within distal dendritic spines [2]. It remains unresolved, however, whether a complete secretory pathway, including Golgi and trans Golgi network-like membranes, exists near synapses for the local transport and processing of newly synthesized proteins. Here, we report evidence of a satellite secretory pathway in distal dendritic spines and distal dendrites of the mammalian brain. Membranes analogous to early (RER and ERGIC), middle (Golgi cisternae), and late (TGN) secretory pathway compartments are present within dendritic spines and in distal dendrites. Local synthesis, processing, and transport of newly translated integral membrane and secretory proteins may thus provide the molecular basis for synapse-specific modifications during long-term information storage in the brain.
Long-term information storage within the brain requires the synthesis of new proteins and their use in synapse-specific modifications. Recently, we demonstrated that translation sites for the local synthesis of integral membrane and secretory proteins occur within distal dendritic spines. It remains unresolved, however, whether a complete secretory pathway, including Golgi and trans Golgi network-like membranes, exists near synapses for the local transport and processing of newly synthesized proteins. Here, we report evidence of a satellite secretory pathway in distal dendritic spines and distal dendrites of the mammalian brain. Membranes analogous to early (RER and ERGIC), middle (Golgi cisternae), and late (TGN) secretory pathway compartments are present within dendritic spines and in distal dendrites. Local synthesis, processing, and transport of newly translated integral membrane and secretory proteins may thus provide the molecular basis for synapse-specific modifications during long-term information storage in the brain.
Author Pierce, Joseph P
Mayer, Thomas
McCarthy, J.Brian
Author_xml – sequence: 1
  givenname: Joseph P
  surname: Pierce
  fullname: Pierce, Joseph P
  organization: Division of Neurobiology, Department of Neurology and Neuroscience, Weill Medical College of Cornell University, 411 East 69th Street, New York, NY 10021, USA
– sequence: 2
  givenname: Thomas
  surname: Mayer
  fullname: Mayer, Thomas
  organization: Cellular Biochemistry and Biophysics Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA
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  givenname: J.Brian
  surname: McCarthy
  fullname: McCarthy, J.Brian
  email: jbm2001@med.cornell.edu
  organization: Division of Neurobiology, Department of Neurology and Neuroscience, Weill Medical College of Cornell University, 411 East 69th Street, New York, NY 10021, USA
BackLink https://www.ncbi.nlm.nih.gov/pubmed/11267872$$D View this record in MEDLINE/PubMed
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Snippet Long-term information storage within the brain requires the synthesis of new proteins and their use in synapse-specific modifications [1]. Recently, we...
Long-term information storage within the brain requires the synthesis of new proteins and their use in synapse-specific modifications. Recently, we...
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SubjectTerms Animals
Biomarkers
Dendrites - metabolism
Endoplasmic Reticulum, Rough - metabolism
Glycoproteins
Golgi Apparatus - metabolism
Golgi Matrix Proteins
Hippocampus - metabolism
Hippocampus - ultrastructure
Mannose-Binding Lectins
Mannosidases - metabolism
Membrane Glycoproteins - metabolism
Membrane Proteins - metabolism
rab GTP-Binding Proteins - metabolism
rab1 GTP-Binding Proteins
Rats
Title Evidence for a satellite secretory pathway in neuronal dendritic spines
URI https://dx.doi.org/10.1016/S0960-9822(01)00077-X
https://www.ncbi.nlm.nih.gov/pubmed/11267872
https://search.proquest.com/docview/18168217
https://search.proquest.com/docview/77005687
Volume 11
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