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HEK293T cell lines defective for O-linked glycosylation

Here we describe derivatives of the HEK293T cell line that are defective in their ability to generate mucin-type O-linked glycosylation. Using CRISPR/Cas9 and a single-cell GFP-sorting procedure, the UDP-galactose-4-epimerase (GALE), galactokinase 1 (GALK1), and galactokinase 2 (GALK2) genes were kn...

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Autores principales: Termini, James M., Silver, Zachary A., Connor, Bryony, Antonopoulos, Aristotelis, Haslam, Stuart M., Dell, Anne, Desrosiers, Ronald C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5487050/
https://www.ncbi.nlm.nih.gov/pubmed/28654657
http://dx.doi.org/10.1371/journal.pone.0179949
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author Termini, James M.
Silver, Zachary A.
Connor, Bryony
Antonopoulos, Aristotelis
Haslam, Stuart M.
Dell, Anne
Desrosiers, Ronald C.
author_facet Termini, James M.
Silver, Zachary A.
Connor, Bryony
Antonopoulos, Aristotelis
Haslam, Stuart M.
Dell, Anne
Desrosiers, Ronald C.
author_sort Termini, James M.
collection PubMed
description Here we describe derivatives of the HEK293T cell line that are defective in their ability to generate mucin-type O-linked glycosylation. Using CRISPR/Cas9 and a single-cell GFP-sorting procedure, the UDP-galactose-4-epimerase (GALE), galactokinase 1 (GALK1), and galactokinase 2 (GALK2) genes were knocked out individually and in combinations with greater than 90% of recovered clones having the desired mutations. Although HEK293T cells are tetraploid, we found this approach to be an efficient method to target and disrupt all 4 copies of the target gene. Deficient glycosylation in the GALE knockout cell line could be rescued by the addition of galactose and N-acetylgalactosamine (GalNAc) to the cell culture media. However, when key enzymes of the galactose/GalNAc salvage pathways were disrupted in tandem (GALE+GALK1 or GALE+GALK2), O-glycosylation was eliminated and could not be rescued by the addition of either galactose plus GalNAc or UDP-galactose plus UDP-GalNAc. GALK1 and GALK2 are key enzymes of the galactose/GalNAc salvage pathways. Mass spectrometry was performed on whole cell lysate of the knockout cell lines to verify the glycosylation phenotype. As expected, the GALE knockout was almost completely devoid of all O-glycosylation, with minimal glycosylation as a result of functional salvage pathways. However, the GALE+GALK1 and GALE+GALK2 knockout lines were devoid of all O-glycans. Mass spectrometry analysis revealed that the disruption of GALE, GALK1, and GALE+GALK2 had little effect on the N-glycome. But when GALE was knocked out in tandem with GALK1, N-glycans were exclusively of the high mannose type. Due to the well-characterized nature of these five knockout cell lines, they will likely prove useful for a wide variety of applications.
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spelling pubmed-54870502017-07-11 HEK293T cell lines defective for O-linked glycosylation Termini, James M. Silver, Zachary A. Connor, Bryony Antonopoulos, Aristotelis Haslam, Stuart M. Dell, Anne Desrosiers, Ronald C. PLoS One Research Article Here we describe derivatives of the HEK293T cell line that are defective in their ability to generate mucin-type O-linked glycosylation. Using CRISPR/Cas9 and a single-cell GFP-sorting procedure, the UDP-galactose-4-epimerase (GALE), galactokinase 1 (GALK1), and galactokinase 2 (GALK2) genes were knocked out individually and in combinations with greater than 90% of recovered clones having the desired mutations. Although HEK293T cells are tetraploid, we found this approach to be an efficient method to target and disrupt all 4 copies of the target gene. Deficient glycosylation in the GALE knockout cell line could be rescued by the addition of galactose and N-acetylgalactosamine (GalNAc) to the cell culture media. However, when key enzymes of the galactose/GalNAc salvage pathways were disrupted in tandem (GALE+GALK1 or GALE+GALK2), O-glycosylation was eliminated and could not be rescued by the addition of either galactose plus GalNAc or UDP-galactose plus UDP-GalNAc. GALK1 and GALK2 are key enzymes of the galactose/GalNAc salvage pathways. Mass spectrometry was performed on whole cell lysate of the knockout cell lines to verify the glycosylation phenotype. As expected, the GALE knockout was almost completely devoid of all O-glycosylation, with minimal glycosylation as a result of functional salvage pathways. However, the GALE+GALK1 and GALE+GALK2 knockout lines were devoid of all O-glycans. Mass spectrometry analysis revealed that the disruption of GALE, GALK1, and GALE+GALK2 had little effect on the N-glycome. But when GALE was knocked out in tandem with GALK1, N-glycans were exclusively of the high mannose type. Due to the well-characterized nature of these five knockout cell lines, they will likely prove useful for a wide variety of applications. Public Library of Science 2017-06-27 /pmc/articles/PMC5487050/ /pubmed/28654657 http://dx.doi.org/10.1371/journal.pone.0179949 Text en © 2017 Termini et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Termini, James M.
Silver, Zachary A.
Connor, Bryony
Antonopoulos, Aristotelis
Haslam, Stuart M.
Dell, Anne
Desrosiers, Ronald C.
HEK293T cell lines defective for O-linked glycosylation
title HEK293T cell lines defective for O-linked glycosylation
title_full HEK293T cell lines defective for O-linked glycosylation
title_fullStr HEK293T cell lines defective for O-linked glycosylation
title_full_unstemmed HEK293T cell lines defective for O-linked glycosylation
title_short HEK293T cell lines defective for O-linked glycosylation
title_sort hek293t cell lines defective for o-linked glycosylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5487050/
https://www.ncbi.nlm.nih.gov/pubmed/28654657
http://dx.doi.org/10.1371/journal.pone.0179949
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