Εμφάνιση απλής εγγραφής

dc.creatorMaragozidis P., Papanastasi E., Scutelnic D., Totomi A., Kokkori I., Zarogiannis S.G., Kerenidi T., Gourgoulianis K.I., Balatsos N.A.A.en
dc.date.accessioned2023-01-31T08:57:14Z
dc.date.available2023-01-31T08:57:14Z
dc.date.issued2015
dc.identifier10.1186/s12943-015-0457-3
dc.identifier.issn14764598
dc.identifier.urihttp://hdl.handle.net/11615/76332
dc.description.abstractBackground: Lung cancer is the leading cause of cancer mortality worldwide, mainly due to late diagnosis, poor prognosis and tumor heterogeneity. Thus, the need for biomarkers that will aid classification, treatment and monitoring remains intense and challenging and depends on the better understanding of the tumor pathobiology and underlying mechanisms. The deregulation of gene expression is a hallmark of cancer and a critical parameter is the stability of mRNAs that may lead to increased oncogene and/or decreased tumor suppressor transcript and protein levels. The shortening of mRNA poly(A) tails determines mRNA stability, as it is usually the first step in mRNA degradation, and is catalyzed by deadenylases. Herein, we assess the clinical significance of deadenylases and we study their role on gene expression in squamous cell lung carcinoma (SCC). Methods: Computational transcriptomic analysis from a publicly available microarray was performed in order to examine the expression of deadenylases in SCC patient samples. Subsequently we employed real-time PCR in clinical samples in order to validate the bioinformatics results regarding the gene expression of deadenylases. Selected deadenylases were silenced in NCI-H520 and Hep2 human cancer cell lines and the effect on gene expression was analyzed with cDNA microarrays. Results: The in silico analysis revealed that the expression of several deadenylases is altered in SCC. Quantitative real-time PCR showed that four deadenylases, PARN, CNOT6, CNOT7 and NOC, are differentially expressed in our SCC clinical samples. PARN overexpression correlated with younger patient age and CNOT6 overexpression with non-metastatic tumors. Kaplan-Meier analysis suggests that increased levels of PARN and NOC correlate with significantly increased survival. Gene expression analysis upon PARN and NOC silencing in lung cancer cells revealed gene expression deregulation that was functionally enriched for gene ontologies related to cell adhesion, cell junction, muscle contraction and metabolism. Conclusions: Our results highlight the clinical significance of PARN and NOC on the survival in SCC diagnosed patients. We demonstrate that the enzymes are implicated in important phenotypes pertinent to cancer biology and provide information on their role in the regulation of gene expression in SCC. Overall, our results support an emerging role for deadenylases in SCC and contribute to the understanding of their role in cancer biology. © 2015 Maragozidis et al.en
dc.language.isoenen
dc.sourceMolecular Canceren
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84959531643&doi=10.1186%2fs12943-015-0457-3&partnerID=40&md5=6215cf9d5536b070093939355f7331fc
dc.subjectnocturninen
dc.subjectpolyadenylated RNAen
dc.subjectprotein CNOT6en
dc.subjectprotein CNOT7en
dc.subjectprotein NOCen
dc.subjectprotein PARNen
dc.subjectribonucleaseen
dc.subjectunclassified drugen
dc.subjectcNOT6 protein, humanen
dc.subjectCNOT7 protein, humanen
dc.subjectexoribonucleaseen
dc.subjectnocturninen
dc.subjectnuclear proteinen
dc.subjectpoly(A)-specific ribonucleaseen
dc.subjecttranscription factoren
dc.subjectage distributionen
dc.subjectageden
dc.subjectANGEL1 geneen
dc.subjectANGEL2 geneen
dc.subjectArticleen
dc.subjectcancer prognosisen
dc.subjectcancer survivalen
dc.subjectclinical articleen
dc.subjectCNOT6 geneen
dc.subjectCNOT6L geneen
dc.subjectCNOT7 geneen
dc.subjectCNOT8 geneen
dc.subjectcomputer modelen
dc.subjectcontrolled studyen
dc.subjectgeneen
dc.subjectgene controlen
dc.subjectgene expressionen
dc.subjectgene ontologyen
dc.subjectgene silencingen
dc.subjectgenetic transcriptionen
dc.subjecthumanen
dc.subjecthuman cellen
dc.subjecthuman tissueen
dc.subjectlymph node metastasisen
dc.subjectmicroarray analysisen
dc.subjectNOC geneen
dc.subjectPAN2 geneen
dc.subjectPARN geneen
dc.subjectphenotypeen
dc.subjectprotein expressionen
dc.subjectprotein functionen
dc.subjectquantitative analysisen
dc.subjectreal time polymerase chain reactionen
dc.subjectsmoking habiten
dc.subjectsquamous cell lung carcinomaen
dc.subjectsurvival rateen
dc.subjecttumor volumeen
dc.subjectbiologyen
dc.subjectenzymologyen
dc.subjectgeneticsen
dc.subjectKaplan Meier methoden
dc.subjectlung tumoren
dc.subjectmetabolismen
dc.subjectpathologyen
dc.subjectproceduresen
dc.subjectprognosisen
dc.subjectRNA stabilityen
dc.subjectsquamous cell carcinomaen
dc.subjecttumor cell lineen
dc.subjectCarcinoma, Squamous Cellen
dc.subjectCell Line, Tumoren
dc.subjectComputational Biologyen
dc.subjectExoribonucleasesen
dc.subjectHumansen
dc.subjectKaplan-Meier Estimateen
dc.subjectLung Neoplasmsen
dc.subjectNuclear Proteinsen
dc.subjectPrognosisen
dc.subjectRNA Stabilityen
dc.subjectTranscription Factorsen
dc.subjectBioMed Central Ltd.en
dc.titlePoly(A)-specific ribonuclease and Nocturnin in squamous cell lung cancer: Prognostic value and impact on gene expressionen
dc.typejournalArticleen


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