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...

Full description

Bibliographic Details
Main Authors: Kerrilyn Naidoo, Sibusiso T Malindisa, Tyrone C Otgaar, Martin Bernert, Bianca Da Costa Dias, Eloise Ferreira, Uwe Reusch, Stefan Knackmuss, Melvyn Little, Stefan F T Weiss, Boitelo T Letsolo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4636255?pdf=render
id doaj-9511088401f7480fba48e10fafe0c834
record_format Article
spelling doaj-9511088401f7480fba48e10fafe0c8342020-11-25T01:50:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011011e014161810.1371/journal.pone.0141618Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity.Kerrilyn NaidooSibusiso T MalindisaTyrone C OtgaarMartin BernertBianca Da Costa DiasEloise FerreiraUwe ReuschStefan KnackmussMelvyn LittleStefan F T WeissBoitelo T LetsoloCancer 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.http://europepmc.org/articles/PMC4636255?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kerrilyn Naidoo
Sibusiso T Malindisa
Tyrone C Otgaar
Martin Bernert
Bianca Da Costa Dias
Eloise Ferreira
Uwe Reusch
Stefan Knackmuss
Melvyn Little
Stefan F T Weiss
Boitelo T Letsolo
spellingShingle Kerrilyn Naidoo
Sibusiso T Malindisa
Tyrone C Otgaar
Martin Bernert
Bianca Da Costa Dias
Eloise Ferreira
Uwe Reusch
Stefan Knackmuss
Melvyn Little
Stefan F T Weiss
Boitelo T Letsolo
Knock-Down of the 37kDa/67kDa Laminin Receptor LRP/LR Impedes Telomerase Activity.
PLoS ONE
author_facet Kerrilyn Naidoo
Sibusiso T Malindisa
Tyrone C Otgaar
Martin Bernert
Bianca Da Costa Dias
Eloise Ferreira
Uwe Reusch
Stefan Knackmuss
Melvyn Little
Stefan F T Weiss
Boitelo T Letsolo
author_sort Kerrilyn Naidoo
title 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_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_sort knock-down of the 37kda/67kda laminin receptor lrp/lr impedes telomerase activity.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
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.
url http://europepmc.org/articles/PMC4636255?pdf=render
work_keys_str_mv AT kerrilynnaidoo knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT sibusisotmalindisa knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT tyronecotgaar knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT martinbernert knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT biancadacostadias knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT eloiseferreira knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT uwereusch knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT stefanknackmuss knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT melvynlittle knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT stefanftweiss knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
AT boitelotletsolo knockdownofthe37kda67kdalamininreceptorlrplrimpedestelomeraseactivity
_version_ 1725001061107761152