Circular non-coding RNA ANRIL modulates ribosomal RNA maturation and atherosclerosis in humans

被引:0
|
作者
Lesca M. Holdt
Anika Stahringer
Kristina Sass
Garwin Pichler
Nils A. Kulak
Wolfgang Wilfert
Alexander Kohlmaier
Andreas Herbst
Bernd H. Northoff
Alexandros Nicolaou
Gabor Gäbel
Frank Beutner
Markus Scholz
Joachim Thiery
Kiran Musunuru
Knut Krohn
Matthias Mann
Daniel Teupser
机构
[1] Institute of Laboratory Medicine,Department of Proteomics and Signal Transduction
[2] Ludwig-Maximilians-University Munich,Department of Vascular and Endovascular Surgery
[3] LIFE—Leipzig Research Center for Civilization Diseases,Department of Medicine
[4] Universität Leipzig,Department of Genetics
[5] Max Planck Institute of Biochemistry,undefined
[6] Ludwig-Maximilians-University Munich,undefined
[7] Institute of Laboratory Medicine,undefined
[8] Clinical Chemistry and Molecular Diagnostics,undefined
[9] University Hospital Leipzig,undefined
[10] Institute for Medical Informatics,undefined
[11] Statistics and Epidemiology,undefined
[12] University Leipzig,undefined
[13] Perelman School of Medicine at the University of Pennsylvania,undefined
[14] Perelman School of Medicine at the University of Pennsylvania,undefined
[15] Interdisciplinary Center for Clinical Research,undefined
[16] University Leipzig,undefined
来源
Nature Communications | / 7卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Circular RNAs (circRNAs) are broadly expressed in eukaryotic cells, but their molecular mechanism in human disease remains obscure. Here we show that circular antisense non-coding RNA in the INK4 locus (circANRIL), which is transcribed at a locus of atherosclerotic cardiovascular disease on chromosome 9p21, confers atheroprotection by controlling ribosomal RNA (rRNA) maturation and modulating pathways of atherogenesis. CircANRIL binds to pescadillo homologue 1 (PES1), an essential 60S-preribosomal assembly factor, thereby impairing exonuclease-mediated pre-rRNA processing and ribosome biogenesis in vascular smooth muscle cells and macrophages. As a consequence, circANRIL induces nucleolar stress and p53 activation, resulting in the induction of apoptosis and inhibition of proliferation, which are key cell functions in atherosclerosis. Collectively, these findings identify circANRIL as a prototype of a circRNA regulating ribosome biogenesis and conferring atheroprotection, thereby showing that circularization of long non-coding RNAs may alter RNA function and protect from human disease.
引用
收藏
相关论文
共 50 条
  • [1] Circular non-coding RNA ANRIL modulates ribosomal RNA maturation and atherosclerosis in humans
    Holdt, Lesca M.
    Stahringer, Anika
    Sass, Kristina
    Pichler, Garwin
    Kulak, Nils A.
    Wilfert, Wolfgang
    Kohlmaier, Alexander
    Herbst, Andreas
    Northoff, Bernd H.
    Nicolaou, Alexandros
    Gaebel, Gabor
    Beutner, Frank
    Scholz, Markus
    Thiery, Joachim
    Musunuru, Kiran
    Krohn, Knut
    Mann, Matthias
    Teupser, Daniel
    NATURE COMMUNICATIONS, 2016, 7
  • [2] The role of long non-coding RNA ANRIL in the development of atherosclerosis
    Gareev, Ilgiz
    Kudriashov, Valentin
    Sufianov, Albert
    Begliarzade, Sema
    Ilyasova, Tatiana
    Liang, Yanchao
    Beylerli, Ozal
    NON-CODING RNA RESEARCH, 2022, 7 (04): : 212 - 216
  • [3] The Long Non-Coding RNA ANRIL in Cancers
    Sanchez, Aymeric
    Lhuillier, Julien
    Grosjean, Guillaume
    Ayadi, Lilia
    Maenner, Sylvain
    CANCERS, 2023, 15 (16)
  • [4] Long non-coding RNA ANRIL in gene regulation and its duality in atherosclerosis
    Chi, Jie-shan
    Li, Jian-zhou
    Jia, Jing-jing
    Zhang, Ting
    Liu, Xiao-ma
    Yi, Li
    JOURNAL OF HUAZHONG UNIVERSITY OF SCIENCE AND TECHNOLOGY-MEDICAL SCIENCES, 2017, 37 (06) : 816 - 822
  • [5] Long Non-coding RNA ANRIL in Gene Regulation and Its Duality in Atherosclerosis
    池洁珊
    李鉴洲
    贾静静
    张婷
    刘小马
    易黎
    Current Medical Science, 2017, 37 (06) : 816 - 822
  • [6] Long non-coding RNA ANRIL in gene regulation and its duality in atherosclerosis
    Jie-shan Chi
    Jian-zhou Li
    Jing-jing Jia
    Ting Zhang
    Xiao-ma Liu
    Li Yi
    Current Medical Science, 2017, 37 : 816 - 822
  • [7] CVD-associated non-coding RNA, ANRIL, modulates pathways in VSMC
    Congrains, Ada
    Kamide, Kei
    Katsuya, Tomohiro
    Yasuda, Osamu
    Oguro, Ryousuke
    Yamamoto, Koichi
    Ohishi, Mitsuru
    Rakugi, Hiromi
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2012, 419 (04) : 612 - 616
  • [8] The amazing story of ANRIL, a long non-coding RNA
    Pasmant, Eric
    Laurendeau, Ingrid
    Sabbagh, Audrey
    Parfait, Beatrice
    Vidaud, Michel
    Vidaud, Dominique
    Bieche, Ivan
    M S-MEDECINE SCIENCES, 2010, 26 (6-7): : 564 - 566
  • [9] THE ROLE OF LONG NON-CODING RNA ANRIL IN CHEMOSENSITIVITY IN OSTEOSARCOMA
    Ferdjallah, Asmaa
    Lee, Adam
    Moore, Elise
    Nath, Aritro
    Huang, R. Stephanie
    PEDIATRIC BLOOD & CANCER, 2020, 67 : S122 - S122
  • [10] Non-coding RNA in Spermatogenesis and Epididymal Maturation
    Holt, J. E.
    Stanger, S. J.
    Nixon, B.
    McLaughlin, E. A.
    NON-CODING RNA AND THE REPRODUCTIVE SYSTEM, 2016, 886 : 95 - 120