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ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment

The calcium binding protein ALG-2 is upregulated in several types of cancerous tissues and cancer cell death may be a consequence of ALG-2 downregulation. Novel research suggests that ALG-2 is involved in membrane repair mechanisms, in line with several published studies linking ALG-2 to processes o...

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Autores principales: la Cour, Jonas M., Winding Gojkovic, Pernille, Ambjørner, Sophie E. B., Bagge, Jonas, Jensen, Simone M., Panina, Svetlana, Berchtold, Martin W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150531/
https://www.ncbi.nlm.nih.gov/pubmed/30240438
http://dx.doi.org/10.1371/journal.pone.0204520
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author la Cour, Jonas M.
Winding Gojkovic, Pernille
Ambjørner, Sophie E. B.
Bagge, Jonas
Jensen, Simone M.
Panina, Svetlana
Berchtold, Martin W.
author_facet la Cour, Jonas M.
Winding Gojkovic, Pernille
Ambjørner, Sophie E. B.
Bagge, Jonas
Jensen, Simone M.
Panina, Svetlana
Berchtold, Martin W.
author_sort la Cour, Jonas M.
collection PubMed
description The calcium binding protein ALG-2 is upregulated in several types of cancerous tissues and cancer cell death may be a consequence of ALG-2 downregulation. Novel research suggests that ALG-2 is involved in membrane repair mechanisms, in line with several published studies linking ALG-2 to processes of membrane remodeling and transport, which may contribute to the fitness of cells or protect them from damage. To investigate the involvement of ALG-2 in cell recovery after membrane damage we disrupted the PDCD6 gene encoding the ALG-2 protein in DT-40 cells and exposed them to electroporation. ALG-2 knock-out cells were more sensitive to electroporation as compared to wild type cells. This phenotype could be reversed by reestablishing ALG-2 expression confirming that ALG-2 plays an important role in cell recovery after plasma membrane damage. We found that overexpression of wild type ALG-2 but not a mutated form unable to bind Ca(2+) partially protected HeLa cells from digitonin-induced cell death. Further, we were able to inhibit the cell protective function of ALG-2 after digitonin treatment by adding a peptide with the ALG-2 binding sequence of ALIX, which has been proposed to serve as the ALG-2 downstream target in a number of processes including cell membrane repair. Our results suggest that ALG-2 may serve as a novel therapeutic target in combination with membrane damaging interventions.
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spelling pubmed-61505312018-10-08 ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment la Cour, Jonas M. Winding Gojkovic, Pernille Ambjørner, Sophie E. B. Bagge, Jonas Jensen, Simone M. Panina, Svetlana Berchtold, Martin W. PLoS One Research Article The calcium binding protein ALG-2 is upregulated in several types of cancerous tissues and cancer cell death may be a consequence of ALG-2 downregulation. Novel research suggests that ALG-2 is involved in membrane repair mechanisms, in line with several published studies linking ALG-2 to processes of membrane remodeling and transport, which may contribute to the fitness of cells or protect them from damage. To investigate the involvement of ALG-2 in cell recovery after membrane damage we disrupted the PDCD6 gene encoding the ALG-2 protein in DT-40 cells and exposed them to electroporation. ALG-2 knock-out cells were more sensitive to electroporation as compared to wild type cells. This phenotype could be reversed by reestablishing ALG-2 expression confirming that ALG-2 plays an important role in cell recovery after plasma membrane damage. We found that overexpression of wild type ALG-2 but not a mutated form unable to bind Ca(2+) partially protected HeLa cells from digitonin-induced cell death. Further, we were able to inhibit the cell protective function of ALG-2 after digitonin treatment by adding a peptide with the ALG-2 binding sequence of ALIX, which has been proposed to serve as the ALG-2 downstream target in a number of processes including cell membrane repair. Our results suggest that ALG-2 may serve as a novel therapeutic target in combination with membrane damaging interventions. Public Library of Science 2018-09-21 /pmc/articles/PMC6150531/ /pubmed/30240438 http://dx.doi.org/10.1371/journal.pone.0204520 Text en © 2018 la Cour 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
la Cour, Jonas M.
Winding Gojkovic, Pernille
Ambjørner, Sophie E. B.
Bagge, Jonas
Jensen, Simone M.
Panina, Svetlana
Berchtold, Martin W.
ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment
title ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment
title_full ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment
title_fullStr ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment
title_full_unstemmed ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment
title_short ALG-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment
title_sort alg-2 participates in recovery of cells after plasma membrane damage by electroporation and digitonin treatment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150531/
https://www.ncbi.nlm.nih.gov/pubmed/30240438
http://dx.doi.org/10.1371/journal.pone.0204520
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