Literature DB >> 32914209

NEAT1 polyA-modulating antisense oligonucleotides reveal opposing functions for both long non-coding RNA isoforms in neuroblastoma.

Alina Naveed1, Jack A Cooper1, Ruohan Li1, Alysia Hubbard2, Jingwei Chen3,4, Tao Liu3,4, Steve D Wilton5, Sue Fletcher5,6, Archa H Fox7.   

Abstract

Many long non-coding RNAs (lncRNA) are highly dysregulated in cancer and are emerging as therapeutic targets. One example is NEAT1, which consists of two overlapping lncRNA isoforms, NEAT1_1 (3.7 kb) and NEAT1_2 (23 kb), that are functionally distinct. The longer NEAT1_2 is responsible for scaffolding gene-regulatory nuclear bodies termed paraspeckles, whereas NEAT1_1 is involved in paraspeckle-independent function. The NEAT1 isoform ratio is dependent on the efficient cleavage and polyadenylation of NEAT1_1 at the expense of NEAT1_2. Here, we developed a targeted antisense oligonucleotide (ASO) approach to sterically block NEAT1_1 polyadenylation processing, achieving upregulation of NEAT1_2 and abundant paraspeckles. We have applied these ASOs to cells of the heterogeneous infant cancer, neuroblastoma, as we found higher NEAT1_1:NEAT1_2 ratio and lack of paraspeckles in high-risk neuroblastoma cells. These ASOs decrease NEAT1_1 levels, increase NEAT1_2/paraspeckles and concomitantly reduce cell viability in high-risk neuroblastoma specifically. In contrast, overexpression of NEAT1_1 has the opposite effect, increasing cell proliferation. Transcriptomic analyses of high-risk neuroblastoma cells with altered NEAT1 ratios and increased paraspeckle abundance after ASO treatment showed an upregulation of differentiation pathways, as opposed to the usual aggressive neuroblastic phenotype. Thus, we have developed potential anti-cancer ASO drugs that can transiently increase growth-inhibiting NEAT1_2 RNA at the expense of growth-promoting NEAT1_1 RNA. These ASOs, unlike others that degrade lncRNAs, provide insights into the importance of altering lncRNA polyadenylation events to suppress tumorigenesis as a strategy to combat cancer.

Entities:  

Keywords:  Biomolecular condensates; MYCN; NONO; RNA therapeutics; Super resolution

Year:  2020        PMID: 32914209     DOI: 10.1007/s00018-020-03632-6

Source DB:  PubMed          Journal:  Cell Mol Life Sci        ISSN: 1420-682X            Impact factor:   9.261


  57 in total

1.  MENepsilon/beta noncoding RNAs are essential for structural integrity of nuclear paraspeckles.

Authors:  Yasnory T F Sasaki; Takashi Ideue; Miho Sano; Toutai Mituyama; Tetsuro Hirose
Journal:  Proc Natl Acad Sci U S A       Date:  2009-02-02       Impact factor: 11.205

2.  An architectural role for a nuclear noncoding RNA: NEAT1 RNA is essential for the structure of paraspeckles.

Authors:  Christine M Clemson; John N Hutchinson; Sergio A Sara; Alexander W Ensminger; Archa H Fox; Andrew Chess; Jeanne B Lawrence
Journal:  Mol Cell       Date:  2009-02-12       Impact factor: 17.970

3.  Alternative 3'-end processing of long noncoding RNA initiates construction of nuclear paraspeckles.

Authors:  Takao Naganuma; Shinichi Nakagawa; Akie Tanigawa; Yasnory F Sasaki; Naoki Goshima; Tetsuro Hirose
Journal:  EMBO J       Date:  2012-09-07       Impact factor: 11.598

4.  MEN epsilon/beta nuclear-retained non-coding RNAs are up-regulated upon muscle differentiation and are essential components of paraspeckles.

Authors:  Hongjae Sunwoo; Marcel E Dinger; Jeremy E Wilusz; Paulo P Amaral; John S Mattick; David L Spector
Journal:  Genome Res       Date:  2008-12-22       Impact factor: 9.043

5.  Altered Expression of the Long Noncoding RNA NEAT1 in Huntington's Disease.

Authors:  Jun-Sang Sunwoo; Soon-Tae Lee; Wooseok Im; Mijung Lee; Jung-Ick Byun; Keun-Hwa Jung; Kyung-Il Park; Ki-Young Jung; Sang Kun Lee; Kon Chu; Manho Kim
Journal:  Mol Neurobiol       Date:  2016-05-25       Impact factor: 5.590

Review 6.  The multidimensional mechanisms of long noncoding RNA function.

Authors:  Francesco P Marchese; Ivan Raimondi; Maite Huarte
Journal:  Genome Biol       Date:  2017-10-31       Impact factor: 13.583

Review 7.  Long non-coding RNA NEAT1 overexpression is associated with poor prognosis in cancer patients: a systematic review and meta-analysis.

Authors:  Chao Yang; Zhuo Li; Yajun Li; Rui Xu; Yongfeng Wang; Yu Tian; Wei Chen
Journal:  Oncotarget       Date:  2017-01-10

8.  Protective paraspeckle hyper-assembly downstream of TDP-43 loss of function in amyotrophic lateral sclerosis.

Authors:  Tatyana A Shelkovnikova; Michail S Kukharsky; Haiyan An; Pasquale Dimasi; Svetlana Alexeeva; Osman Shabir; Paul R Heath; Vladimir L Buchman
Journal:  Mol Neurodegener       Date:  2018-06-01       Impact factor: 18.879

Review 9.  Mechanisms of long noncoding RNA function in development and disease.

Authors:  Sandra U Schmitz; Phillip Grote; Bernhard G Herrmann
Journal:  Cell Mol Life Sci       Date:  2016-03-23       Impact factor: 9.261

Review 10.  Emerging roles of long non-coding RNA in cancer.

Authors:  Anna Sanchez Calle; Yumi Kawamura; Yusuke Yamamoto; Fumitaka Takeshita; Takahiro Ochiya
Journal:  Cancer Sci       Date:  2018-06-28       Impact factor: 6.716

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  10 in total

Review 1.  Context-specific regulation and function of mRNA alternative polyadenylation.

Authors:  Sibylle Mitschka; Christine Mayr
Journal:  Nat Rev Mol Cell Biol       Date:  2022-07-07       Impact factor: 113.915

2.  Direct RNA-RNA interaction between Neat1 and RNA targets, as a mechanism for RNAs paraspeckle retention.

Authors:  Audrey Jacq; Denis Becquet; Séverine Guillen; Bénédicte Boyer; Maria-Montserrat Bello-Goutierrez; Jean-Louis Franc; Anne-Marie François-Bellan
Journal:  RNA Biol       Date:  2021-03-15       Impact factor: 4.652

Review 3.  Splice correction therapies for familial hypercholesterolemic patients with low-density lipoprotein receptor mutations.

Authors:  Craig S McIntosh; Gerald F Watts; Steve D Wilton; May T Aung-Htut
Journal:  Curr Opin Lipidol       Date:  2021-12-01       Impact factor: 4.776

Review 4.  Compartment-Specific Proximity Ligation Expands the Toolbox to Assess the Interactome of the Long Non-Coding RNA NEAT1.

Authors:  Victoria Mamontova; Barbara Trifault; Kaspar Burger
Journal:  Int J Mol Sci       Date:  2022-04-17       Impact factor: 6.208

Review 5.  Brain delivering RNA-based therapeutic strategies by targeting mTOR pathway for axon regeneration after central nervous system injury.

Authors:  Ming-Xi Li; Jing-Wen Weng; Eric S Ho; Shing Fung Chow; Chi Kwan Tsang
Journal:  Neural Regen Res       Date:  2022-10       Impact factor: 6.058

Review 6.  Micellization: A new principle in the formation of biomolecular condensates.

Authors:  Tomohiro Yamazaki; Tetsuya Yamamoto; Tetsuro Hirose
Journal:  Front Mol Biosci       Date:  2022-08-29

Review 7.  Nonviral delivery systems for antisense oligonucleotide therapeutics.

Authors:  Si Huang; Xin-Yan Hao; Yong-Jiang Li; Jun-Yong Wu; Da-Xiong Xiang; Shilin Luo
Journal:  Biomater Res       Date:  2022-09-30

Review 8.  The Detection and Bioinformatic Analysis of Alternative 3' UTR Isoforms as Potential Cancer Biomarkers.

Authors:  Nitika Kandhari; Calvin A Kraupner-Taylor; Paul F Harrison; David R Powell; Traude H Beilharz
Journal:  Int J Mol Sci       Date:  2021-05-18       Impact factor: 5.923

Review 9.  Small Drugs, Huge Impact: The Extraordinary Impact of Antisense Oligonucleotides in Research and Drug Development.

Authors:  Anais M Quemener; Maria Laura Centomo; Scott L Sax; Riccardo Panella
Journal:  Molecules       Date:  2022-01-15       Impact factor: 4.411

Review 10.  Novel Insights into the Emerging Role of Neat1 and Its Effects Downstream in the Regulation of Inflammation.

Authors:  Yongli Pan; Ting Wang; Zhiqiang Zhao; Wei Wei; Xinyu Yang; Xianbin Wang; Wenqiang Xin
Journal:  J Inflamm Res       Date:  2022-01-26
  10 in total

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