학술논문

Pan-Cancer Analysis of lncRNA Regulation Supports Their Targeting of Cancer Genes in Each Tumor Context
Document Type
article
Author
Chiu, Hua-ShengSomvanshi, SonalPatel, EktabenChen, Ting-WenSingh, Vivek PZorman, BarryPatil, Sagar LPan, YinghongChatterjee, Sujash SNetwork, The Cancer Genome Atlas ResearchCaesar-Johnson, Samantha JDemchok, John AFelau, InaKasapi, MelpomeniFerguson, Martin LHutter, Carolyn MSofia, Heidi JTarnuzzer, RoyWang, ZhiningYang, LimingZenklusen, Jean CZhang, JiashanChudamani, SudhaLiu, JiaLolla, LaxmiNaresh, RashiPihl, ToddSun, QiangWan, YunhuWu, YeCho, JuokDeFreitas, TimothyFrazer, ScottGehlenborg, NilsGetz, GadHeiman, David IKim, JaegilLawrence, Michael SLin, PeiMeier, SamNoble, Michael SSaksena, GordonVoet, DougZhang, HaileiBernard, BradyChambwe, NyashaDhankani, VarshaKnijnenburg, TheoKramer, RogerLeinonen, KalleLiu, YuexinMiller, MichaelReynolds, SheilaShmulevich, IlyaThorsson, VesteinnZhang, WeiAkbani, RehanBroom, Bradley MHegde, Apurva MJu, ZhenlinKanchi, Rupa SKorkut, AnilLi, JunLiang, HanLing, ShiyunLiu, WenbinLu, YilingMills, Gordon BNg, Kwok-ShingRao, ArvindRyan, MichaelWang, JingWeinstein, John NZhang, JiexinAbeshouse, AdamArmenia, JoshuaChakravarty, DebyaniChatila, Walid Kde Bruijn, InoGao, JianjiongGross, Benjamin EHeins, Zachary JKundra, RitikaLa, KonnorLadanyi, MarcLuna, AugustinNissan, Moriah GOchoa, AngelicaPhillips, Sarah MReznik, EdSanchez-Vega, FranciscoSander, ChrisSchultz, NikolausSheridan, RobertSumer, S OnurSun, YichaoTaylor, Barry SWang, JioajiaoZhang, HongxinAnur, Pavana
Source
Cell Reports. 23(1)
Subject
Biological Sciences
Bioinformatics and Computational Biology
Breast Cancer
Human Genome
Biotechnology
Cancer
Genetics
Cancer Genomics
Women's Health
Aetiology
2.1 Biological and endogenous factors
Cell Line
Cell Line
Tumor
Gene Expression Regulation
Neoplastic
Gene Regulatory Networks
Genes
Tumor Suppressor
Humans
Neoplasms
Oncogenes
RNA
Long Noncoding
Cancer Genome Atlas Research Network
RNA-binding proteins
cancer gene
interactome
lncRNA
microRNA
modulation
noncoding RNA
pan-cancer
regulation
Biochemistry and Cell Biology
Medical Physiology
Biological sciences
Language
Abstract
Long noncoding RNAs (lncRNAs) are commonly dysregulated in tumors, but only a handful are known to play pathophysiological roles in cancer. We inferred lncRNAs that dysregulate cancer pathways, oncogenes, and tumor suppressors (cancer genes) by modeling their effects on the activity of transcription factors, RNA-binding proteins, and microRNAs in 5,185 TCGA tumors and 1,019 ENCODE assays. Our predictions included hundreds of candidate onco- and tumor-suppressor lncRNAs (cancer lncRNAs) whose somatic alterations account for the dysregulation of dozens of cancer genes and pathways in each of 14 tumor contexts. To demonstrate proof of concept, we showed that perturbations targeting OIP5-AS1 (an inferred tumor suppressor) and TUG1 and WT1-AS (inferred onco-lncRNAs) dysregulated cancer genes and altered proliferation of breast and gynecologic cancer cells. Our analysis indicates that, although most lncRNAs are dysregulated in a tumor-specific manner, some, including OIP5-AS1, TUG1, NEAT1, MEG3, and TSIX, synergistically dysregulate cancer pathways in multiple tumor contexts.