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High-Resolution Imaging of Cellular Proteins

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Cover of 'High-Resolution Imaging of Cellular Proteins'

Table of Contents

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    Book Overview
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    Chapter 1 Expression of Epitope-Tagged Proteins in Mammalian Cells in Culture.
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    Chapter 2 Antibody Production with Synthetic Peptides.
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    Chapter 3 High-Resolution Imaging of Cellular Proteins
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    Chapter 4 Preparation of Colloidal Gold Particles and Conjugation to Protein A/G/L, IgG, F(ab')2, and Streptavidin.
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    Chapter 5 Helper-Dependent Adenoviral Vectors and Their Use for Neuroscience Applications.
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    Chapter 6 Localizing Proteins in Fixed Giardia lamblia and Live Cultured Mammalian Cells by Confocal Fluorescence Microscopy.
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    Chapter 7 Using Fluorescent Protein Fusions to Study Protein Subcellular Localization and Dynamics in Plant Cells.
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    Chapter 8 Using FRAP or FRAPA to Visualize the Movement of Fluorescently Labeled Proteins or Cellular Organelles in Live Cultured Neurons Transformed with Adeno-Associated Viruses.
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    Chapter 9 Bimolecular Fluorescence Complementation (BiFC) Analysis of Protein-Protein Interactions and Assessment of Subcellular Localization in Live Cells.
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    Chapter 10 Viral Injection and Cranial Window Implantation for In Vivo Two-Photon Imaging.
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    Chapter 11 Imaging Synaptic Vesicle Exocytosis-Endocytosis with pH-Sensitive Fluorescent Proteins.
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    Chapter 12 Immunogold Protein Localization on Grid-Glued Freeze-Fracture Replicas.
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    Chapter 13 Pre-embedding Double-Label Immunoelectron Microscopy of Chemically Fixed Tissue Culture Cells.
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    Chapter 14 Immunoelectron Microscopy of Cryofixed and Freeze-Substituted Plant Tissues.
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    Chapter 15 High-Resolution Imaging of Cellular Proteins
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    Chapter 16 Pre-embedding Method of Electron Microscopy for Glycan Localization in Mammalian Tissues and Cells Using Lectin Probes.
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    Chapter 17 Pre-embedding Nanogold Silver and Gold Intensification.
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    Chapter 18 Post-embedding Mammalian Tissue for Immunoelectron Microscopy: A Standardized Procedure Based on Heat-Induced Antigen Retrieval.
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    Chapter 19 Pre- and Post-embedding Immunogold Labeling of Tissue Sections.
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    Chapter 20 High-Resolution Imaging of Cellular Proteins
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    Chapter 21 Monitoring Synaptic Vesicle Protein Sorting with Enhanced Horseradish Peroxidase in the Electron Microscope.
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    Chapter 22 High-Resolution Imaging of Cellular Proteins
Attention for Chapter 21: Monitoring Synaptic Vesicle Protein Sorting with Enhanced Horseradish Peroxidase in the Electron Microscope.
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Chapter title
Monitoring Synaptic Vesicle Protein Sorting with Enhanced Horseradish Peroxidase in the Electron Microscope.
Chapter number 21
Book title
High-Resolution Imaging of Cellular Proteins
Published in
Methods in molecular biology, January 2016
DOI 10.1007/978-1-4939-6352-2_21
Pubmed ID
Book ISBNs
978-1-4939-6350-8, 978-1-4939-6352-2
Authors

Thomas Schikorski Ph.D., Thomas Schikorski

Editors

Steven D. Schwartzbach, Omar Skalli, Thomas Schikorski

Abstract

Protein sorting is the fundamental cellular process that creates and maintains cell organelles and subcellular structures. The synaptic vesicle (SV) is a unique cell organelle that contains a plethora of specific SV proteins and its protein composition is crucial for its function. Thus understanding the mechanisms that sort proteins to SVs and other cell organelles is central to neuroscience and cell biology.While in the past protein sorting was studied in the fluorescence and confocal microscope, we here present a protocol that reveals SV protein trafficking and sorting in the electron microscope (EM). The protocol exploits tagging SV proteins with a new genetically encoded label for EM: enhanced horseradish peroxidase (eHRP). eHRP gained its high sensitivity through direct evolution of its catalytic activity and is detectable in the EM and LM after expression in neurons and other mammalian cells. The protocol describes the use of eHRP, labeling of SVs in cultured hippocampal neurons, and analysis via serial section reconstruction.