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PMID: 15020101 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

A pre-embedding immunogold approach for detection of synaptic endocytic proteins in situ.

Journal of neuroscience methods ·Vol. 135 ·No. 1-2 ·2004-05-30 ·Pages 169-74

Evergren E, Tomilin N, Vasylieva E, Sergeeva V, Bloom O, Gad H, Capani F, Shupliakov O

Abstract

During the past decade, many molecular components of clathrin-mediated endocytosis have been identified and proposed to play various hypothetical roles in the process [Nat. Rev. Neurosci. 1 (2000) 161; Nature 422 (2003) 37]. One limitation to the evaluation of these hypotheses is the efficiency and resolution of immunolocalization protocols currently in use. In order to facilitate the evaluation of these hypotheses and to understand more fully the molecular mechanisms of clathrin-mediated endocytosis, we have developed a protocol allowing enhanced and reliable subcellular immunolocalization of proteins in synaptic endocytic zones in situ. Synapses established by giant reticulospinal axons in lamprey are used as a model system for these experiments. These axons are unbranched and reach up to 80-100 microm in diameter. Synaptic active zones and surrounding endocytic zones are established on the surface of the axonal cylinder. To provide access for antibodies to the sites of synaptic vesicle recycling, axons are lightly fixed and cut along their longitudinal axis. To preserve the ultrastructure of the synaptic endocytic zone, antibodies are applied without the addition of detergents. Opened axons are incubated with primary antibodies, which are detected with secondary antibodies conjugated to gold particles. Specimens are then post-fixed and processed for electron microscopy. This approach allows preservation of the ultrastructure of the endocytic sites during immunolabeling procedures, while simultaneously achieving reliable immunogold detection of proteins on endocytic intermediates. To explore the utility of this approach, we have investigated the localization of a GTPase, dynamin, on clathrin-coated intermediates in the endocytic zone of the lamprey giant synapse. Using the present immunogold protocol, we confirm the presence of dynamin on late stage coated pits [Nature 422 (2003) 37] and also demonstrate that dynamin is recruited to the coat of endocytic intermediates from the very early stages of the clathrin coat formation. Thus, our experiments show that the current pre-embedding immunogold method is a useful experimental tool to study the molecular mechanisms of synaptic vesicle recycling.

MeSH Terms
Animals Clathrin/physiology Clathrin-Coated Vesicles/metabolism Dynamin I/analysis Endocytosis/physiology Immunohistochemistry/methods Lampreys Microscopy, Electron/methods Rats Synapses/metabolism,ultrastructure Synapsins/analysis Synaptic Vesicles/metabolism,ultrastructure
Chemicals
Clathrin Synapsins Dynamin I
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Evergren Emma
Laboratory of Neuronal Membrane Trafficking, Department of Neuroscience, Karolinska Institutet, Center of Excellence in Developmental Biology, Stockholm, Sweden.
Tomilin Nikolay
Vasylieva Elena
Sergeeva Victoria
Bloom Ona
Gad Helge
Capani Francisco
Shupliakov Oleg
Article Info
Journal
Journal of neuroscience methods
Abbr.
J Neurosci Methods
ISSN
0165-0270
Published
2004-05-30
Pages
169-74
Language
English
Region
Netherlands
NLM ID
7905558
Subset
IM
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