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Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity

Cancer has become a major problem worldwide due to its increasing incidence and mortality rates. Both the 37kDa/67kDa laminin receptor (LRP/LR) and telomerase are overexpressed in cancer cells. LRP/LR enhances the invasiveness of cancer cells thereby promoting metastasis, supporting angiogenesis and...

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Autores principales: Naidoo, Kerrilyn, Malindisa, Sibusiso T., Otgaar, Tyrone C., Bernert, Martin, Da Costa Dias, Bianca, Ferreira, Eloise, Reusch, Uwe, Knackmuss, Stefan, Little, Melvyn, Weiss, Stefan F. T., Letsolo, Boitelo T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4636255/
https://www.ncbi.nlm.nih.gov/pubmed/26545108
http://dx.doi.org/10.1371/journal.pone.0141618
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author Naidoo, Kerrilyn
Malindisa, Sibusiso T.
Otgaar, Tyrone C.
Bernert, Martin
Da Costa Dias, Bianca
Ferreira, Eloise
Reusch, Uwe
Knackmuss, Stefan
Little, Melvyn
Weiss, Stefan F. T.
Letsolo, Boitelo T.
author_facet Naidoo, Kerrilyn
Malindisa, Sibusiso T.
Otgaar, Tyrone C.
Bernert, Martin
Da Costa Dias, Bianca
Ferreira, Eloise
Reusch, Uwe
Knackmuss, Stefan
Little, Melvyn
Weiss, Stefan F. T.
Letsolo, Boitelo T.
author_sort Naidoo, Kerrilyn
collection PubMed
description Cancer has become a major problem worldwide due to its increasing incidence and mortality rates. Both the 37kDa/67kDa laminin receptor (LRP/LR) and telomerase are overexpressed in cancer cells. LRP/LR enhances the invasiveness of cancer cells thereby promoting metastasis, supporting angiogenesis and hampering apoptosis. An essential component of telomerase, hTERT is overexpressed in 85–90% of most cancers. hTERT expression and increased telomerase activity are associated with tumor progression. As LRP/LR and hTERT both play a role in cancer progression, we investigated a possible correlation between LRP/LR and telomerase. LRP/LR and hTERT co-localized in the perinuclear compartment of tumorigenic breast cancer (MDA_MB231) cells and non-tumorigenic human embryonic kidney (HEK293) cells. FLAG(®) Co-immunoprecipitation assays confirmed an interaction between LRP/LR and hTERT. In addition, flow cytometry revealed that both cell lines displayed high cell surface and intracellular LRP/LR and hTERT levels. Knock-down of LRP/LR by RNAi technology significantly reduced telomerase activity. These results suggest for the first time a novel function of LRP/LR in contributing to telomerase activity. siRNAs targeting LRP/LR may act as a potential alternative therapeutic tool for cancer treatment by (i) blocking metastasis (ii) promoting angiogenesis (iii) inducing apoptosis and (iv) impeding telomerase activity.
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spelling pubmed-46362552015-11-13 Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity Naidoo, Kerrilyn Malindisa, Sibusiso T. Otgaar, Tyrone C. Bernert, Martin Da Costa Dias, Bianca Ferreira, Eloise Reusch, Uwe Knackmuss, Stefan Little, Melvyn Weiss, Stefan F. T. Letsolo, Boitelo T. PLoS One Research Article Cancer has become a major problem worldwide due to its increasing incidence and mortality rates. Both the 37kDa/67kDa laminin receptor (LRP/LR) and telomerase are overexpressed in cancer cells. LRP/LR enhances the invasiveness of cancer cells thereby promoting metastasis, supporting angiogenesis and hampering apoptosis. An essential component of telomerase, hTERT is overexpressed in 85–90% of most cancers. hTERT expression and increased telomerase activity are associated with tumor progression. As LRP/LR and hTERT both play a role in cancer progression, we investigated a possible correlation between LRP/LR and telomerase. LRP/LR and hTERT co-localized in the perinuclear compartment of tumorigenic breast cancer (MDA_MB231) cells and non-tumorigenic human embryonic kidney (HEK293) cells. FLAG(®) Co-immunoprecipitation assays confirmed an interaction between LRP/LR and hTERT. In addition, flow cytometry revealed that both cell lines displayed high cell surface and intracellular LRP/LR and hTERT levels. Knock-down of LRP/LR by RNAi technology significantly reduced telomerase activity. These results suggest for the first time a novel function of LRP/LR in contributing to telomerase activity. siRNAs targeting LRP/LR may act as a potential alternative therapeutic tool for cancer treatment by (i) blocking metastasis (ii) promoting angiogenesis (iii) inducing apoptosis and (iv) impeding telomerase activity. Public Library of Science 2015-11-06 /pmc/articles/PMC4636255/ /pubmed/26545108 http://dx.doi.org/10.1371/journal.pone.0141618 Text en © 2015 Naidoo 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Naidoo, Kerrilyn
Malindisa, Sibusiso T.
Otgaar, Tyrone C.
Bernert, Martin
Da Costa Dias, Bianca
Ferreira, Eloise
Reusch, Uwe
Knackmuss, Stefan
Little, Melvyn
Weiss, Stefan F. T.
Letsolo, Boitelo T.
Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity
title Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity
title_full Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity
title_fullStr Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity
title_full_unstemmed Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity
title_short Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity
title_sort knock-down of the 37kda/67kda laminin receptor lrp/lr impedes telomerase activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4636255/
https://www.ncbi.nlm.nih.gov/pubmed/26545108
http://dx.doi.org/10.1371/journal.pone.0141618
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