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Long non-coding RNA containing ultraconserved genomic region 8 promotes bladder cancer tumorigenesis
- Source :
- Oncotarget 7 (2016): 20636–20654. doi:10.18632/oncotarget.7833, info:cnr-pdr/source/autori:Olivieri M.; Ferro M.; Terreri S.; Durso M.; Romanelli A.; Avitabile C.; De Cobelli O.; Messere A.; Bruzzese D.; Vannini I.; Marinelli L.; Novellino E.; Zhang W.; Incoronato M.; Ilardi G.; Staibano S.; Marra L.; Franco R.; Perdona S.; Terracciano D.; Czerniak B.; Liguori G.L.; Colonna V.; Fabbri M.; Febbraio F.; Calin G.A.; Cimmino A./titolo:Long non-coding RNA containing ultraconserved genomic region 8 promotes bladder cancer tumorigenesis/doi:10.18632%2Foncotarget.7833/rivista:Oncotarget/anno:2016/pagina_da:20636/pagina_a:20654/intervallo_pagine:20636–20654/volume:7, Oncotarget, Oncotarget 7 (2016): 20636–20654., info:cnr-pdr/source/autori:Olivieri, Michele; Ferro, Matteo; Terreri, Sara; Durso, Montano; Romanelli, Alessandra; Avitabile, Concetta; De Cobelli, Ottavio; Messere, Anna; Bruzzese, Dario; Vannini, Ivan; Marinelli, Luciana; Novellino, Ettore; Zhang, Wei; Incoronato, Mariarosaria; Ilardi, Gennaro; Staibano, Stefania; Marra, Laura; Franco, Renato; Perdona, Sisto; Terracciano, Daniela; Czerniak, Bogdan; Liguori, Giovanna L.; Colonna, Vincenza; Fabbri, Muller; Febbraio, Ferdinando; Calin, George A.; Cimmino, Amelia/titolo:Long non-coding RNA containing ultraconserved genomic region 8 promotes bladder cancer tumorigenesis/doi:/rivista:Oncotarget/anno:2016/pagina_da:20636/pagina_a:20654/intervallo_pagine:20636–20654/volume:7
- Publication Year :
- 2016
- Publisher :
- Impact Journals, Albany, N.Y. , Stati Uniti d'America, 2016.
-
Abstract
- Ultraconserved regions (UCRs) have been shown to originate non-coding RNA transcripts (T-UCRs) that have different expression profiles and play functional roles in the pathophysiology of multiple cancers. The relevance of these functions to the pathogenesis of bladder cancer (BlCa) is speculative. To elucidate this relevance, we first used genome-wide profiling to evaluate the expression of T-UCRs in BlCa tissues. Analysis of two datasets comprising normal bladder tissues and BlCa specimens with a custom T-UCR microarray identified ultraconserved RNA (uc.) 8+ as the most upregulated T-UCR in BlCa tissues, although its expression was lower than in pericancerous bladder tissues. These results were confirmed on BlCa tissues by real-time PCR and by in situ hybridization. Although uc.8+ is located within intron 1 of CASZ1, a zinc-finger transcription factor, the transcribed non-coding RNA encoding uc.8+ is expressed independently of CASZ1. In vitro experiments evaluating the effects of uc.8+ silencing, showed significantly decreased capacities for cancer cell invasion, migration, and proliferation. From this, we proposed and validated a model of interaction in which uc.8+ shuttles from the nucleus to the cytoplasm of BlCa cells, interacts with microRNA (miR)-596, and cooperates in the promotion and development of BlCa. Using computational analysis, we investigated the miR-binding domain accessibility, as determined by base-pairing interactions within the uc.8+ predicted secondary structure, RNA binding affinity, and RNA species abundance in bladder tissues and showed that uc.8+ is a natural decoy for miR-596. Thus uc.8+ upregulation results in increased expression of MMP9, increasing the invasive potential of BlCa cells. These interactions between evolutionarily conserved regions of DNA suggest that natural selection has preserved this potentially regulatory layer that uses RNA to modulate miR levels, opening up the possibility for development of useful markers for early diagnosis and prognosis as well as for development of new RNA-based cancer therapies.
- Subjects :
- 0301 basic medicine
Male
T-UCR
RNA, Untranslated
Apoptosis
In situ hybridization
Biology
medicine.disease_cause
03 medical and health sciences
0302 clinical medicine
Cell Movement
microRNA
medicine
Biomarkers, Tumor
Tumor Cells, Cultured
Gene silencing
Humans
Transcription factor
Conserved Sequence
CASZ1
Aged
Cell Proliferation
Neoplasm Staging
Genetics
Base Sequence
MMP9
Bladder cancer
Intron
RNA
MicroRNA
Middle Aged
Long non-coding RNA
Cell biology
Gene Expression Regulation, Neoplastic
030104 developmental biology
Cell Transformation, Neoplastic
Oncology
Urinary Bladder Neoplasms
030220 oncology & carcinogenesis
Female
Neoplasm Grading
Carcinogenesis
Research Paper
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Oncotarget 7 (2016): 20636–20654. doi:10.18632/oncotarget.7833, info:cnr-pdr/source/autori:Olivieri M.; Ferro M.; Terreri S.; Durso M.; Romanelli A.; Avitabile C.; De Cobelli O.; Messere A.; Bruzzese D.; Vannini I.; Marinelli L.; Novellino E.; Zhang W.; Incoronato M.; Ilardi G.; Staibano S.; Marra L.; Franco R.; Perdona S.; Terracciano D.; Czerniak B.; Liguori G.L.; Colonna V.; Fabbri M.; Febbraio F.; Calin G.A.; Cimmino A./titolo:Long non-coding RNA containing ultraconserved genomic region 8 promotes bladder cancer tumorigenesis/doi:10.18632%2Foncotarget.7833/rivista:Oncotarget/anno:2016/pagina_da:20636/pagina_a:20654/intervallo_pagine:20636–20654/volume:7, Oncotarget, Oncotarget 7 (2016): 20636–20654., info:cnr-pdr/source/autori:Olivieri, Michele; Ferro, Matteo; Terreri, Sara; Durso, Montano; Romanelli, Alessandra; Avitabile, Concetta; De Cobelli, Ottavio; Messere, Anna; Bruzzese, Dario; Vannini, Ivan; Marinelli, Luciana; Novellino, Ettore; Zhang, Wei; Incoronato, Mariarosaria; Ilardi, Gennaro; Staibano, Stefania; Marra, Laura; Franco, Renato; Perdona, Sisto; Terracciano, Daniela; Czerniak, Bogdan; Liguori, Giovanna L.; Colonna, Vincenza; Fabbri, Muller; Febbraio, Ferdinando; Calin, George A.; Cimmino, Amelia/titolo:Long non-coding RNA containing ultraconserved genomic region 8 promotes bladder cancer tumorigenesis/doi:/rivista:Oncotarget/anno:2016/pagina_da:20636/pagina_a:20654/intervallo_pagine:20636–20654/volume:7
- Accession number :
- edsair.doi.dedup.....4ae0af9da6f9c46ace80be3efa69c95f
- Full Text :
- https://doi.org/10.18632/oncotarget.7833