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MALAT1 Expression Is Deregulated in miR-34a Knockout Cell Lines
by
Bombieri, Cristina
, Rotondo, John Charles
, Romanelli, Maria Grazia
, Stefani, Chiara
, Fochi, Stefania
, Valenti, Maria Teresa
, Valentino, Angela
, Trabetti, Elisabetta
, Bruno, Maria Giusy
, De Simone, Tonia
, Patuzzo, Cristina
, Mazziotta, Chiara
, Orlandi, Elisa
, Ruggiero, Alessandra
, Corsi, Andrea
, Zipeto, Donato
in
Apoptosis
/ Breast cancer
/ Cardiomyopathy
/ Cell cycle
/ Cell differentiation
/ Cell growth
/ Colorectal cancer
/ CRISPR
/ Development and progression
/ gene editing
/ Gene expression
/ Genes
/ Genetic engineering
/ Genetic research
/ Health aspects
/ hsa-miR-34a
/ lncRNA
/ Lung cancer
/ Lymphoma
/ Medical research
/ Medicine, Experimental
/ Melanoma
/ Metastasis
/ MicroRNA
/ MicroRNAs
/ miR-34a
/ miRNA
/ Molecular modelling
/ Nervous system diseases
/ Neurodegenerative diseases
/ Ontology
/ Prostate
/ RNA-mediated interference
/ Senescence
/ T cells
/ Tumors
/ Type 2 diabetes
2025
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MALAT1 Expression Is Deregulated in miR-34a Knockout Cell Lines
by
Bombieri, Cristina
, Rotondo, John Charles
, Romanelli, Maria Grazia
, Stefani, Chiara
, Fochi, Stefania
, Valenti, Maria Teresa
, Valentino, Angela
, Trabetti, Elisabetta
, Bruno, Maria Giusy
, De Simone, Tonia
, Patuzzo, Cristina
, Mazziotta, Chiara
, Orlandi, Elisa
, Ruggiero, Alessandra
, Corsi, Andrea
, Zipeto, Donato
in
Apoptosis
/ Breast cancer
/ Cardiomyopathy
/ Cell cycle
/ Cell differentiation
/ Cell growth
/ Colorectal cancer
/ CRISPR
/ Development and progression
/ gene editing
/ Gene expression
/ Genes
/ Genetic engineering
/ Genetic research
/ Health aspects
/ hsa-miR-34a
/ lncRNA
/ Lung cancer
/ Lymphoma
/ Medical research
/ Medicine, Experimental
/ Melanoma
/ Metastasis
/ MicroRNA
/ MicroRNAs
/ miR-34a
/ miRNA
/ Molecular modelling
/ Nervous system diseases
/ Neurodegenerative diseases
/ Ontology
/ Prostate
/ RNA-mediated interference
/ Senescence
/ T cells
/ Tumors
/ Type 2 diabetes
2025
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MALAT1 Expression Is Deregulated in miR-34a Knockout Cell Lines
by
Bombieri, Cristina
, Rotondo, John Charles
, Romanelli, Maria Grazia
, Stefani, Chiara
, Fochi, Stefania
, Valenti, Maria Teresa
, Valentino, Angela
, Trabetti, Elisabetta
, Bruno, Maria Giusy
, De Simone, Tonia
, Patuzzo, Cristina
, Mazziotta, Chiara
, Orlandi, Elisa
, Ruggiero, Alessandra
, Corsi, Andrea
, Zipeto, Donato
in
Apoptosis
/ Breast cancer
/ Cardiomyopathy
/ Cell cycle
/ Cell differentiation
/ Cell growth
/ Colorectal cancer
/ CRISPR
/ Development and progression
/ gene editing
/ Gene expression
/ Genes
/ Genetic engineering
/ Genetic research
/ Health aspects
/ hsa-miR-34a
/ lncRNA
/ Lung cancer
/ Lymphoma
/ Medical research
/ Medicine, Experimental
/ Melanoma
/ Metastasis
/ MicroRNA
/ MicroRNAs
/ miR-34a
/ miRNA
/ Molecular modelling
/ Nervous system diseases
/ Neurodegenerative diseases
/ Ontology
/ Prostate
/ RNA-mediated interference
/ Senescence
/ T cells
/ Tumors
/ Type 2 diabetes
2025
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MALAT1 Expression Is Deregulated in miR-34a Knockout Cell Lines
Journal Article
MALAT1 Expression Is Deregulated in miR-34a Knockout Cell Lines
2025
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Overview
Background/Objectives: Non-coding microRNA-34a (miR-34a) regulates the expression of key factors involved in several cellular processes, such as differentiation, apoptosis, proliferation, cell cycle, and senescence. Deregulation of the expression of these factors is implicated in the onset and progression of several human diseases, including cancer, neurodegenerative disorders, and pathologies associated with viral infections and inflammation. Despite numerous studies, the molecular mechanisms regulated by miR-34a remain to be fully understood. The present study aimed to generate miR-34a knockout cell lines to identify novel genes potentially regulated by its expression. Methods: We employed the CRISPR-Cas9 gene editing system to knock out the hsa-miR-34a gene in HeLa and 293T cell lines, two widely used models for studying molecular and cellular mechanisms. We compared proliferation rates and gene expression profiles via RNA-seq and qPCR analyses between the wild-type and miR-34a KO cell lines. Results: Knockout of miR-34a resulted in a decreased proliferation rate in both cell lines. Noteworthy, the ablation of miR-34a resulted in increased expression of the long non-coding RNA MALAT1. Additionally, miR-34a-5p silencing in the A375 melanoma cell line led to MALAT1 overexpression. Conclusions: Our findings support the role of the miR-34a/MALAT1 axis in regulating proliferation processes.
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