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A robust method for particulate detection of a genetic tag for 3D electron microscopy

Genetic tags allow rapid localization of tagged proteins in cells and tissues. APEX, an ascorbate peroxidase, has proven to be one of the most versatile and robust genetic tags for ultrastructural localization by electron microscopy (EM). Here, we describe a simple method, APEX-Gold, which converts...

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Autores principales: Rae, James, Ferguson, Charles, Ariotti, Nicholas, Webb, Richard I, Cheng, Han-Hao, Mead, James L, Riches, James D, Hunter, Dominic JB, Martel, Nick, Baltos, Joanne, Christopoulos, Arthur, Bryce, Nicole S, Cagigas, Maria Lastra, Fonseka, Sachini, Sayre, Marcel E, Hardeman, Edna C, Gunning, Peter W, Gambin, Yann, Hall, Thomas E, Parton, Robert G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8104959/
https://www.ncbi.nlm.nih.gov/pubmed/33904409
http://dx.doi.org/10.7554/eLife.64630
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author Rae, James
Ferguson, Charles
Ariotti, Nicholas
Webb, Richard I
Cheng, Han-Hao
Mead, James L
Riches, James D
Hunter, Dominic JB
Martel, Nick
Baltos, Joanne
Christopoulos, Arthur
Bryce, Nicole S
Cagigas, Maria Lastra
Fonseka, Sachini
Sayre, Marcel E
Hardeman, Edna C
Gunning, Peter W
Gambin, Yann
Hall, Thomas E
Parton, Robert G
author_facet Rae, James
Ferguson, Charles
Ariotti, Nicholas
Webb, Richard I
Cheng, Han-Hao
Mead, James L
Riches, James D
Hunter, Dominic JB
Martel, Nick
Baltos, Joanne
Christopoulos, Arthur
Bryce, Nicole S
Cagigas, Maria Lastra
Fonseka, Sachini
Sayre, Marcel E
Hardeman, Edna C
Gunning, Peter W
Gambin, Yann
Hall, Thomas E
Parton, Robert G
author_sort Rae, James
collection PubMed
description Genetic tags allow rapid localization of tagged proteins in cells and tissues. APEX, an ascorbate peroxidase, has proven to be one of the most versatile and robust genetic tags for ultrastructural localization by electron microscopy (EM). Here, we describe a simple method, APEX-Gold, which converts the diffuse oxidized diaminobenzidine reaction product of APEX into a silver/gold particle akin to that used for immunogold labelling. The method increases the signal-to-noise ratio for EM detection, providing unambiguous detection of the tagged protein, and creates a readily quantifiable particulate signal. We demonstrate the wide applicability of this method for detection of membrane proteins, cytoplasmic proteins, and cytoskeletal proteins. The method can be combined with different EM techniques including fast freezing and freeze substitution, focussed ion beam scanning EM, and electron tomography. Quantitation of expressed APEX-fusion proteins is achievable using membrane vesicles generated by a cell-free expression system. These membrane vesicles possess a defined quantum of signal, which can act as an internal standard for determination of the absolute density of expressed APEX-fusion proteins. Detection of fusion proteins expressed at low levels in cells from CRISPR-edited mice demonstrates the high sensitivity of the APEX-Gold method.
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spelling pubmed-81049592021-05-11 A robust method for particulate detection of a genetic tag for 3D electron microscopy Rae, James Ferguson, Charles Ariotti, Nicholas Webb, Richard I Cheng, Han-Hao Mead, James L Riches, James D Hunter, Dominic JB Martel, Nick Baltos, Joanne Christopoulos, Arthur Bryce, Nicole S Cagigas, Maria Lastra Fonseka, Sachini Sayre, Marcel E Hardeman, Edna C Gunning, Peter W Gambin, Yann Hall, Thomas E Parton, Robert G eLife Cell Biology Genetic tags allow rapid localization of tagged proteins in cells and tissues. APEX, an ascorbate peroxidase, has proven to be one of the most versatile and robust genetic tags for ultrastructural localization by electron microscopy (EM). Here, we describe a simple method, APEX-Gold, which converts the diffuse oxidized diaminobenzidine reaction product of APEX into a silver/gold particle akin to that used for immunogold labelling. The method increases the signal-to-noise ratio for EM detection, providing unambiguous detection of the tagged protein, and creates a readily quantifiable particulate signal. We demonstrate the wide applicability of this method for detection of membrane proteins, cytoplasmic proteins, and cytoskeletal proteins. The method can be combined with different EM techniques including fast freezing and freeze substitution, focussed ion beam scanning EM, and electron tomography. Quantitation of expressed APEX-fusion proteins is achievable using membrane vesicles generated by a cell-free expression system. These membrane vesicles possess a defined quantum of signal, which can act as an internal standard for determination of the absolute density of expressed APEX-fusion proteins. Detection of fusion proteins expressed at low levels in cells from CRISPR-edited mice demonstrates the high sensitivity of the APEX-Gold method. eLife Sciences Publications, Ltd 2021-04-27 /pmc/articles/PMC8104959/ /pubmed/33904409 http://dx.doi.org/10.7554/eLife.64630 Text en © 2021, Rae et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Rae, James
Ferguson, Charles
Ariotti, Nicholas
Webb, Richard I
Cheng, Han-Hao
Mead, James L
Riches, James D
Hunter, Dominic JB
Martel, Nick
Baltos, Joanne
Christopoulos, Arthur
Bryce, Nicole S
Cagigas, Maria Lastra
Fonseka, Sachini
Sayre, Marcel E
Hardeman, Edna C
Gunning, Peter W
Gambin, Yann
Hall, Thomas E
Parton, Robert G
A robust method for particulate detection of a genetic tag for 3D electron microscopy
title A robust method for particulate detection of a genetic tag for 3D electron microscopy
title_full A robust method for particulate detection of a genetic tag for 3D electron microscopy
title_fullStr A robust method for particulate detection of a genetic tag for 3D electron microscopy
title_full_unstemmed A robust method for particulate detection of a genetic tag for 3D electron microscopy
title_short A robust method for particulate detection of a genetic tag for 3D electron microscopy
title_sort robust method for particulate detection of a genetic tag for 3d electron microscopy
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8104959/
https://www.ncbi.nlm.nih.gov/pubmed/33904409
http://dx.doi.org/10.7554/eLife.64630
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