Literature DB >> 26426411

Single-Molecule Sequencing Reveals Estrogen-Regulated Clinically Relevant lncRNAs in Breast Cancer.

Philip Jonsson1, Cristian Coarfa1, Fahmi Mesmar1, Tal Raz1, Kimal Rajapakshe1, John F Thompson1, Preethi H Gunaratne1, Cecilia Williams1.   

Abstract

Estrogen receptor (ER)α-positive tumors are commonly treated with ERα antagonists or inhibitors of estrogen synthesis, but most tumors develop resistance, and we need to better understand the pathways that underlie the proliferative and tumorigenic role of this estrogen-activated transcription factor. We here present the first single-molecule sequencing of the estradiol-induced ERα transcriptome in the luminal A-type human breast cancer cell lines MCF7 and T47D. Sequencing libraries were prepared from the polyadenylated RNA fraction after 8 hours of estrogen or vehicle treatment. Single-molecule sequencing was carried out in biological and technical replicates and differentially expressed genes were defined and analyzed for enriched processes. Correlation analysis with clinical expression and survival were performed, and follow-up experiments carried out using time series, chromatin immunoprecipitation and quantitative real-time PCR. We uncovered that ERα in addition to regulating approximately 2000 protein-coding genes, also regulated up to 1000 long noncoding RNAs (lncRNAs). Most of these were up-regulated, and 178 lncRNAs were regulated in both cell lines. We demonstrate that Long Intergenic Non-protein Coding RNA 1016 (LINC01016) and LINC00160 are direct transcriptional targets of ERα, correlate with ERα expression in clinical samples, and show prognostic significance in relation to breast cancer survival. We show that silencing of LINC00160 results in reduced proliferation, demonstrating that lncRNA expression have functional consequences. Our findings suggest that ERα regulation of lncRNAs is clinically relevant and that their functions and potential use as biomarkers for endocrine response are important to explore.

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Year:  2015        PMID: 26426411      PMCID: PMC4627604          DOI: 10.1210/me.2015-1153

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  41 in total

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2.  Integrative annotation of human large intergenic noncoding RNAs reveals global properties and specific subclasses.

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3.  Single-molecule sequencing of an individual human genome.

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Review 4.  The role of replicates for error mitigation in next-generation sequencing.

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5.  Quantification of the yeast transcriptome by single-molecule sequencing.

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6.  Profiling of estrogen up- and down-regulated gene expression in human breast cancer cells: insights into gene networks and pathways underlying estrogenic control of proliferation and cell phenotype.

Authors:  Jonna Frasor; Jeanne M Danes; Barry Komm; Ken C N Chang; C Richard Lyttle; Benita S Katzenellenbogen
Journal:  Endocrinology       Date:  2003-07-10       Impact factor: 4.736

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10.  GAS5, a non-protein-coding RNA, controls apoptosis and is downregulated in breast cancer.

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  24 in total

1.  Long non-coding RNA MVIH is associated with poor prognosis and malignant biological behavior in breast cancer.

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Journal:  Tumour Biol       Date:  2015-11-10

2.  Genome-wide association study in East Asians identifies two novel breast cancer susceptibility loci.

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Journal:  Hum Mol Genet       Date:  2016-06-27       Impact factor: 6.150

3.  Epigenomics-based identification of oestrogen-regulated long noncoding RNAs in ER+ breast cancer.

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Review 4.  Biochemical Methods To Investigate lncRNA and the Influence of lncRNA:Protein Complexes on Chromatin.

Authors:  Emily J McFadden; Amanda E Hargrove
Journal:  Biochemistry       Date:  2016-02-24       Impact factor: 3.162

5.  linc00673 (ERRLR01) is a prognostic indicator of overall survival in breast cancer.

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6.  Long non-coding RNA UCA1 enhances tamoxifen resistance in breast cancer cells through a miR-18a-HIF1α feedback regulatory loop.

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Review 7.  Current Status of Long Non-Coding RNAs in Human Breast Cancer.

Authors:  Stefanie Cerk; Daniela Schwarzenbacher; Jan Basri Adiprasito; Michael Stotz; Georg C Hutterer; Armin Gerger; Hui Ling; George Adrian Calin; Martin Pichler
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8.  The potential for liquid biopsies in the precision medical treatment of breast cancer.

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9.  Portraying breast cancers with long noncoding RNAs.

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Review 10.  Decoding the usefulness of non-coding RNAs as breast cancer markers.

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