Genome-wide scan of long noncoding RNA single nucleotide polymorphisms and pancreatic cancer susceptibility.
Chiara CorradiManuel GentiluomoLászló GajdánGiulia Martina CavestroEdita KreivenaiteGregorio Di FrancoCosimo SpertiMatteo GiaccheriniMaria Chiara PetroneFrancesca TavanoDomenica GioffredaLuca MorelliPavel SoučekAngelo AndriulliJakob R IzbickiNiccolò NapoliEwa Małecka-PanasPéter HegyiJohn P NeoptolemosStefano LandiYogesh VashistClaudio PasqualiYe LuKlara CervenaGeorge E TheodoropoulosStefania MozGabriele CapursoOliver StrobelSilvia CarraraThilo HackertViktor HlavacLivia ArchibugiMartin OliveriusGiuseppe VanellaPavel VodickaPaolo Giorgio ArcidiaconoRaffaele PezzilliAnna Caterina MilanettoRita T LawlorAudrius IvanauskasAndrea SzentesiJuozas KupcinskasSabrina G G TestoniMartin LovecekMichael NentwichMaria GazouliClaudio LuchiniRaffaella Alessia ZuppardoErika DarvasiHermann BrennerCristian GheorgheKrzysztof JamroziakFrederico CanzianDaniele CampaPublished in: International journal of cancer (2021)
Pancreatic ductal adenocarcinoma (PDAC) is projected to become the second cancer-related cause of death by 2030. Identifying novel risk factors, including genetic risk loci, could be instrumental in risk stratification and implementation of prevention strategies. Long noncoding RNAs (lncRNAs) are involved in regulation of key biological processes, and the possible role of their genetic variability has been unexplored so far. Combining genome wide association studies and functional data, we investigated the genetic variability in all lncRNAs. We analyzed 9893 PDAC cases and 9969 controls and identified a genome-wide significant association between the rs7046076 SNP and risk of developing PDAC (P = 9.73 × 10-9 ). This SNP is located in the NONHSAG053086.2 (lnc-SMC2-1) gene and the risk allele is predicted to disrupt the binding of the lncRNA with the micro-RNA (miRNA) hsa-mir-1256 that regulates several genes involved in cell cycle, such as CDKN2B. The CDKN2B region is pleiotropic and its genetic variants have been associated with several human diseases, possibly though an imperfect interaction between lncRNA and miRNA. We present a novel PDAC risk locus, supported by a genome-wide statistical significance and a plausible biological mechanism.
Keyphrases
- genome wide
- long noncoding rna
- dna methylation
- cell cycle
- copy number
- cell proliferation
- risk factors
- long non coding rna
- genome wide association
- healthcare
- primary care
- endothelial cells
- gene expression
- computed tomography
- magnetic resonance imaging
- electronic health record
- machine learning
- climate change
- quality improvement
- genome wide identification
- breast cancer risk
- atomic force microscopy
- high density
- case control