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Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells

The chaperone system based on Hsp70 and proteins of the DnaJ family is known to protect tumor cells from a variety of cytotoxic factors, including anti-tumor therapy. To analyze whether this also functions in a highly malignant brain tumor, we knocked down the expression of Hsp70 (HSPA1A) and its tw...

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Autores principales: Meshalkina, Darya A., Shevtsov, Maxim A., Dobrodumov, Anatoliy V., Komarova, Elena Y., Voronkina, Irina V., Lazarev, Vladimir F., Margulis, Boris A., Guzhova, Irina V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5008343/
https://www.ncbi.nlm.nih.gov/pubmed/26959111
http://dx.doi.org/10.18632/oncotarget.7872
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author Meshalkina, Darya A.
Shevtsov, Maxim A.
Dobrodumov, Anatoliy V.
Komarova, Elena Y.
Voronkina, Irina V.
Lazarev, Vladimir F.
Margulis, Boris A.
Guzhova, Irina V.
author_facet Meshalkina, Darya A.
Shevtsov, Maxim A.
Dobrodumov, Anatoliy V.
Komarova, Elena Y.
Voronkina, Irina V.
Lazarev, Vladimir F.
Margulis, Boris A.
Guzhova, Irina V.
author_sort Meshalkina, Darya A.
collection PubMed
description The chaperone system based on Hsp70 and proteins of the DnaJ family is known to protect tumor cells from a variety of cytotoxic factors, including anti-tumor therapy. To analyze whether this also functions in a highly malignant brain tumor, we knocked down the expression of Hsp70 (HSPA1A) and its two most abundant co-chaperones, Hdj1 (DNAJB1) and Hdj2 (DNAJA1) in a C6 rat glioblastoma cell line. As expected, tumor depletion of Hsp70 caused a substantial reduction in its growth rate and increased the survival of tumor-bearing animals, whereas the reduction of Hdj1 expression had no effect. Unexpectedly, a reduction in the expression of Hdj2 led to the enhanced aggressiveness of the C6 tumor, demonstrated by its rapid growth, metastasis formation and a 1.5-fold reduction in the lifespan of tumor-bearing animals. The in vitro reduction of Hdj2 expression reduced spheroid density and simultaneously enhanced the migration and invasion of C6 cells. At the molecular level, a knock-down of Hdj2 led to the relocation of N-cadherin and the enhanced activity of metalloproteinases 1, 2, 8 and 9, which are markers of highly malignant cancer cells. The changes in the actin cytoskeleton in Hdj2-depleted cells indicate that the protein is also important for prevention of the amoeboid-like transition of tumor cells. The results of this study uncover a completely new role for the Hdj2 co-chaperone in tumorigenicity and suggest that the protein is a potential drug target.
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spelling pubmed-50083432016-09-12 Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells Meshalkina, Darya A. Shevtsov, Maxim A. Dobrodumov, Anatoliy V. Komarova, Elena Y. Voronkina, Irina V. Lazarev, Vladimir F. Margulis, Boris A. Guzhova, Irina V. Oncotarget Research Paper The chaperone system based on Hsp70 and proteins of the DnaJ family is known to protect tumor cells from a variety of cytotoxic factors, including anti-tumor therapy. To analyze whether this also functions in a highly malignant brain tumor, we knocked down the expression of Hsp70 (HSPA1A) and its two most abundant co-chaperones, Hdj1 (DNAJB1) and Hdj2 (DNAJA1) in a C6 rat glioblastoma cell line. As expected, tumor depletion of Hsp70 caused a substantial reduction in its growth rate and increased the survival of tumor-bearing animals, whereas the reduction of Hdj1 expression had no effect. Unexpectedly, a reduction in the expression of Hdj2 led to the enhanced aggressiveness of the C6 tumor, demonstrated by its rapid growth, metastasis formation and a 1.5-fold reduction in the lifespan of tumor-bearing animals. The in vitro reduction of Hdj2 expression reduced spheroid density and simultaneously enhanced the migration and invasion of C6 cells. At the molecular level, a knock-down of Hdj2 led to the relocation of N-cadherin and the enhanced activity of metalloproteinases 1, 2, 8 and 9, which are markers of highly malignant cancer cells. The changes in the actin cytoskeleton in Hdj2-depleted cells indicate that the protein is also important for prevention of the amoeboid-like transition of tumor cells. The results of this study uncover a completely new role for the Hdj2 co-chaperone in tumorigenicity and suggest that the protein is a potential drug target. Impact Journals LLC 2016-03-03 /pmc/articles/PMC5008343/ /pubmed/26959111 http://dx.doi.org/10.18632/oncotarget.7872 Text en Copyright: © 2016 Meshalkina et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Meshalkina, Darya A.
Shevtsov, Maxim A.
Dobrodumov, Anatoliy V.
Komarova, Elena Y.
Voronkina, Irina V.
Lazarev, Vladimir F.
Margulis, Boris A.
Guzhova, Irina V.
Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells
title Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells
title_full Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells
title_fullStr Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells
title_full_unstemmed Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells
title_short Knock-down of Hdj2/DNAJA1 co-chaperone results in an unexpected burst of tumorigenicity of C6 glioblastoma cells
title_sort knock-down of hdj2/dnaja1 co-chaperone results in an unexpected burst of tumorigenicity of c6 glioblastoma cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5008343/
https://www.ncbi.nlm.nih.gov/pubmed/26959111
http://dx.doi.org/10.18632/oncotarget.7872
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