NCBI Logo
GEO Logo
   NCBI > GEO > Accession DisplayHelp Not logged in | LoginHelp
GEO help: Mouse over screen elements for information.
          Go
Series GSE188404 Query DataSets for GSE188404
Status Public on Nov 10, 2021
Title The Long Non Coding RNA SAMMSON is a regulator of chemosensitivity and metabolic orientation in doxorubicin resistant breast cancer cells
Organism Homo sapiens
Experiment type Expression profiling by high throughput sequencing
Summary Despite improvements in therapeutic strategies for treating breast cancers, tumor relapse and chemoresistance remain major issues in patient outcomes. Indeed, cancer cells display a metabolic plasticity allowing a quick adaptation to tumoral microenvironment and to cellular stresses induced by chemotherapy. Recently, long non-coding RNA molecules (lncRNAs) have emerged as important regulators of cellular metabolic orientation. In the present study, we addressed the role of the long non-coding RNA molecule (lncRNA) SAMMSON on the metabolic reprogramming and chemoresistance of MCF-7 breast cancer cells resistant to doxorubicin (MCF-7dox). Our results showed an overexpression of SAMMSON in MCF-7dox compared to doxorubicin-sensitive cells (MCF-7). Silencing of SAMMSON expression by siRNA in MCF-7dox cells resulted in a metabolic rewiring with improvement of oxidative metabolism, decreased mitochondrial ROS production, increased mitochondrial replication, transcription and translation and an attenuation of chemoresistance. These results highlight the role of SAMMSON in the metabolic adaptations leading to the development of chemoresistance in breast cancer cells. Thus, targeting SAMMSON expression levels represents a promising therapeutic route to circumvent doxorubicin resistance in breast cancers.
 
Overall design Transcriptomic analysis of differentially expressed genes between siRNA-induced inhibition of SAMMSON lncRNA expression in MCF7-dox chemoresistant breast cancer cells (6 samples), compared to MCF-7dox cells transfected with a no-target siRNA (6 samples)
 
Contributor(s) Orre C, Desquiret-Dumas V, Prunier-Mirebeau D
Citation(s) 34827149
Submission date Nov 08, 2021
Last update date Feb 09, 2022
Contact name Charlotte ORRE
E-mail(s) charlotte.orre@etud.univ-angers.fr
Organization name MitoVasc, Mitolab team
Street address Rue des Capucins (Institut de Biologie en Santé, CHU d'Angers)
City Angers
ZIP/Postal code 49100
Country France
 
Platforms (1)
GPL23934 Ion Torrent S5 (Homo sapiens)
Samples (12)
GSM5680758 siScb1
GSM5680759 siSAMMSON1
GSM5680760 siScb2
Relations
BioProject PRJNA778738
SRA SRP345051

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE188404_design_siScb_and_siSAMMSON.txt.gz 172 b (ftp)(http) TXT
GSE188404_raw_gene_counts.txt.gz 295.1 Kb (ftp)(http) TXT
SRA Run SelectorHelp
Raw data are available in SRA
Processed data are available on Series record

| NLM | NIH | GEO Help | Disclaimer | Accessibility |
NCBI Home NCBI Search NCBI SiteMap