Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cells

In a previous study, we have shown that shortening of telomeres by telomerase inhibition sensitized cancer cells to cisplatinum, slower their migration, increased DNA damage and impaired DNA repair [1]. In the following study, we present a network model combining microRNA and proteomic profiling att...

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Main Authors: Orit Uziel, Meir Lahav
Format: Article
Language:English
Published: Elsevier 2015-03-01
Series:Data in Brief
Online Access:http://www.sciencedirect.com/science/article/pii/S235234091400033X
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author Orit Uziel
Meir Lahav
author_facet Orit Uziel
Meir Lahav
author_sort Orit Uziel
collection DOAJ
description In a previous study, we have shown that shortening of telomeres by telomerase inhibition sensitized cancer cells to cisplatinum, slower their migration, increased DNA damage and impaired DNA repair [1]. In the following study, we present a network model combining microRNA and proteomic profiling attempting to decipher the molecular mechanism underlying the effect of shortened telomeres on the obtained phenotype of cancer cells [2]. The microRNA and proteomic data were used for a network model construction, which provided us with several nodal candidates that may potentially mediate the shortened-telomeres dependent features. These protein expressions were experimentally validated, supporting their potential central role in this system [2]. In this article, we delineate the full proteomic data and a microarray analyses performed on cells with shortened telomeres compared to their cognate parental intact telomere cells. The data is attached as excel files. In principle, clarifying the mechanism behind telomere shortened phenotype may facilitate novel therapeutics development and may also obviate the time consuming process of telomere shortening achieved by telomerase inhibition.
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spelling doaj.art-3077167eb4364b9ba206f95825ff9cca2022-12-22T03:54:31ZengElsevierData in Brief2352-34092015-03-012C485110.1016/j.dib.2014.12.003Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cellsOrit UzielMeir LahavIn a previous study, we have shown that shortening of telomeres by telomerase inhibition sensitized cancer cells to cisplatinum, slower their migration, increased DNA damage and impaired DNA repair [1]. In the following study, we present a network model combining microRNA and proteomic profiling attempting to decipher the molecular mechanism underlying the effect of shortened telomeres on the obtained phenotype of cancer cells [2]. The microRNA and proteomic data were used for a network model construction, which provided us with several nodal candidates that may potentially mediate the shortened-telomeres dependent features. These protein expressions were experimentally validated, supporting their potential central role in this system [2]. In this article, we delineate the full proteomic data and a microarray analyses performed on cells with shortened telomeres compared to their cognate parental intact telomere cells. The data is attached as excel files. In principle, clarifying the mechanism behind telomere shortened phenotype may facilitate novel therapeutics development and may also obviate the time consuming process of telomere shortening achieved by telomerase inhibition.http://www.sciencedirect.com/science/article/pii/S235234091400033X
spellingShingle Orit Uziel
Meir Lahav
Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cells
Data in Brief
title Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cells
title_full Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cells
title_fullStr Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cells
title_full_unstemmed Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cells
title_short Proteomic and microRNA data clarifying the effects of telomere shortening on cancer cells
title_sort proteomic and microrna data clarifying the effects of telomere shortening on cancer cells
url http://www.sciencedirect.com/science/article/pii/S235234091400033X
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