Cargando…

Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk

Human genome-wide association studies have linked single nucleotide polymorphisms (SNPs) on chromosome 9p21.3 near the INK4/ARF (CDKN2a/b) locus with susceptibility to atherosclerotic vascular disease (ASVD). Although this locus encodes three well-characterized tumor suppressors, p16(INK4a), p15(INK...

Descripción completa

Detalles Bibliográficos
Autores principales: Burd, Christin E., Jeck, William R., Liu, Yan, Sanoff, Hanna K., Wang, Zefeng, Sharpless, Norman E.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2996334/
https://www.ncbi.nlm.nih.gov/pubmed/21151960
http://dx.doi.org/10.1371/journal.pgen.1001233
_version_ 1782193186209267712
author Burd, Christin E.
Jeck, William R.
Liu, Yan
Sanoff, Hanna K.
Wang, Zefeng
Sharpless, Norman E.
author_facet Burd, Christin E.
Jeck, William R.
Liu, Yan
Sanoff, Hanna K.
Wang, Zefeng
Sharpless, Norman E.
author_sort Burd, Christin E.
collection PubMed
description Human genome-wide association studies have linked single nucleotide polymorphisms (SNPs) on chromosome 9p21.3 near the INK4/ARF (CDKN2a/b) locus with susceptibility to atherosclerotic vascular disease (ASVD). Although this locus encodes three well-characterized tumor suppressors, p16(INK4a), p15(INK4b), and ARF, the SNPs most strongly associated with ASVD are ∼120 kb from the nearest coding gene within a long non-coding RNA (ncRNA) known as ANRIL (CDKN2BAS). While individuals homozygous for the atherosclerotic risk allele show decreased expression of ANRIL and the coding INK4/ARF transcripts, the mechanism by which such distant genetic variants influence INK4/ARF expression is unknown. Here, using rapid amplification of cDNA ends (RACE) and analysis of next-generation RNA sequencing datasets, we determined the structure and abundance of multiple ANRIL species. Each of these species was present at very low copy numbers in primary and cultured cells; however, only the expression of ANRIL isoforms containing exons proximal to the INK4/ARF locus correlated with the ASVD risk alleles. Surprisingly, RACE also identified transcripts containing non-colinear ANRIL exonic sequences, whose expression also correlated with genotype and INK4/ARF expression. These non-polyadenylated RNAs resisted RNAse R digestion and could be PCR amplified using outward-facing primers, suggesting they represent circular RNA structures that could arise from by-products of mRNA splicing. Next-generation DNA sequencing and splice prediction algorithms identified polymorphisms within the ASVD risk interval that may regulate ANRIL splicing and circular ANRIL (cANRIL) production. These results identify novel circular RNA products emanating from the ANRIL locus and suggest causal variants at 9p21.3 regulate INK4/ARF expression and ASVD risk by modulating ANRIL expression and/or structure.
format Text
id pubmed-2996334
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-29963342010-12-10 Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk Burd, Christin E. Jeck, William R. Liu, Yan Sanoff, Hanna K. Wang, Zefeng Sharpless, Norman E. PLoS Genet Research Article Human genome-wide association studies have linked single nucleotide polymorphisms (SNPs) on chromosome 9p21.3 near the INK4/ARF (CDKN2a/b) locus with susceptibility to atherosclerotic vascular disease (ASVD). Although this locus encodes three well-characterized tumor suppressors, p16(INK4a), p15(INK4b), and ARF, the SNPs most strongly associated with ASVD are ∼120 kb from the nearest coding gene within a long non-coding RNA (ncRNA) known as ANRIL (CDKN2BAS). While individuals homozygous for the atherosclerotic risk allele show decreased expression of ANRIL and the coding INK4/ARF transcripts, the mechanism by which such distant genetic variants influence INK4/ARF expression is unknown. Here, using rapid amplification of cDNA ends (RACE) and analysis of next-generation RNA sequencing datasets, we determined the structure and abundance of multiple ANRIL species. Each of these species was present at very low copy numbers in primary and cultured cells; however, only the expression of ANRIL isoforms containing exons proximal to the INK4/ARF locus correlated with the ASVD risk alleles. Surprisingly, RACE also identified transcripts containing non-colinear ANRIL exonic sequences, whose expression also correlated with genotype and INK4/ARF expression. These non-polyadenylated RNAs resisted RNAse R digestion and could be PCR amplified using outward-facing primers, suggesting they represent circular RNA structures that could arise from by-products of mRNA splicing. Next-generation DNA sequencing and splice prediction algorithms identified polymorphisms within the ASVD risk interval that may regulate ANRIL splicing and circular ANRIL (cANRIL) production. These results identify novel circular RNA products emanating from the ANRIL locus and suggest causal variants at 9p21.3 regulate INK4/ARF expression and ASVD risk by modulating ANRIL expression and/or structure. Public Library of Science 2010-12-02 /pmc/articles/PMC2996334/ /pubmed/21151960 http://dx.doi.org/10.1371/journal.pgen.1001233 Text en Burd et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Burd, Christin E.
Jeck, William R.
Liu, Yan
Sanoff, Hanna K.
Wang, Zefeng
Sharpless, Norman E.
Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk
title Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk
title_full Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk
title_fullStr Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk
title_full_unstemmed Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk
title_short Expression of Linear and Novel Circular Forms of an INK4/ARF-Associated Non-Coding RNA Correlates with Atherosclerosis Risk
title_sort expression of linear and novel circular forms of an ink4/arf-associated non-coding rna correlates with atherosclerosis risk
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2996334/
https://www.ncbi.nlm.nih.gov/pubmed/21151960
http://dx.doi.org/10.1371/journal.pgen.1001233
work_keys_str_mv AT burdchristine expressionoflinearandnovelcircularformsofanink4arfassociatednoncodingrnacorrelateswithatherosclerosisrisk
AT jeckwilliamr expressionoflinearandnovelcircularformsofanink4arfassociatednoncodingrnacorrelateswithatherosclerosisrisk
AT liuyan expressionoflinearandnovelcircularformsofanink4arfassociatednoncodingrnacorrelateswithatherosclerosisrisk
AT sanoffhannak expressionoflinearandnovelcircularformsofanink4arfassociatednoncodingrnacorrelateswithatherosclerosisrisk
AT wangzefeng expressionoflinearandnovelcircularformsofanink4arfassociatednoncodingrnacorrelateswithatherosclerosisrisk
AT sharplessnormane expressionoflinearandnovelcircularformsofanink4arfassociatednoncodingrnacorrelateswithatherosclerosisrisk