PDGFR-modulated miR-23b cluster and miR-125a-5p suppress lung tumorigenesis by targeting multiple components of KRAS and NF-kB pathways

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作者
Srivatsava Naidu
Lei Shi
Peter Magee
Justin D. Middleton
Alessandro Laganá
Sudhakar Sahoo
Hui Sun Leong
Melanie Galvin
Kristopher Frese
Caroline Dive
Vincenza Guzzardo
Matteo Fassan
Michela Garofalo
机构
[1] Transcriptional Networks in Lung Cancer Group,
[2] Cancer Research UK Manchester Institute,undefined
[3] University of Manchester,undefined
[4] Department of Molecular Virology,undefined
[5] Immunology and Medical Genetics,undefined
[6] Comprehensive Cancer Center,undefined
[7] The Ohio State University,undefined
[8] Department of Genetics and Genomic Sciences,undefined
[9] Icahn School of Medicine at Mount Sinai,undefined
[10] Computational Biology Support Group,undefined
[11] Cancer Research UK Manchester Institute,undefined
[12] University of Manchester,undefined
[13] Clinical and Experimental Pharmacology Group,undefined
[14] Cancer Research UK Manchester Institute,undefined
[15] University of Manchester,undefined
[16] Cancer Research UK Lung Cancer Centre of Excellence,undefined
[17] at Manchester and University College London,undefined
[18] Department of Medicine,undefined
[19] Surgical Pathology Unit,undefined
[20] University of Padua,undefined
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In NSCLC alterations in PDGF receptors are markers of worst prognosis and efficient targeting of these receptors is yet to be achieved. In this study, we explored PDGFR-regulated microRNAs demonstrating that miR-23b cluster and miR-125a-5p are downregulated by increased expression of PDGFR-α or PDGFR-β in NSCLC cells. Mechanistically, the expression of these microRNAs is positively regulated by p53 and negatively modulated by NF-kB p65. Forced expression of miR-23b cluster or miR-125a-5p enhanced drug sensitivity and suppressed invasiveness of NSCLC cells by silencing several genes involved in oncogenic KRAS and NF-kB pathways, including SOS1, GRB2, IQGAP1, RALA, RAF-1, IKKβ, AKT2, ERK2 and KRAS itself. Of note, an inverse correlation between miR-23b cluster, miR-125a-5p and respective target genes was also found in vivo in a large dataset of lung adenocarcinoma samples. Furthermore, in vivo delivery of miR-23b cluster or miR-125a-5p significantly repressed tumour growth in a highly aggressive NSCLC circulating tumour cell (CTC) patient derived explant (CDX) mouse model. In conclusion, our finding sheds light on the PDGFR signaling and endorses the possibility to employ miR-23b cluster and miR-125a-5p as therapeutic tools to silence simultaneously a range of redundant pathways and main effectors of tumorigenesis in NSCLC.
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