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Isoform balance of the long noncoding RNA NEAT1 is regulated by the RNA-binding protein QKI, governs the glioma transcriptome, and impacts cell migration.
Zakutansky, Paul M; Ku, Li; Zhang, Guannan; Shi, Liang; Li, Yangping; Yao, Bing; Bassell, Gary J; Read, Renee D; Feng, Yue.
Affiliation
  • Zakutansky PM; Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia, USA; Graduate Program in Biochemistry, Cell, and Developmental Biology, Graduate Division of Biological and Biomedical Sciences, Emory University, Atlanta, Georgia, USA.
  • Ku L; Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia, USA.
  • Zhang G; Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia, USA.
  • Shi L; Department of Cell Biology, Emory University School of Medicine, Atlanta, Georgia, USA.
  • Li Y; Department of Human Genetics, Emory University School of Medicine, Atlanta, Georgia, USA.
  • Yao B; Department of Human Genetics, Emory University School of Medicine, Atlanta, Georgia, USA.
  • Bassell GJ; Department of Cell Biology, Emory University School of Medicine, Atlanta, Georgia, USA.
  • Read RD; Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia, USA; Department of Hematology and Medical Oncology, Emory University School of Medicine, Atlanta, Georgia, USA; Winship Cancer Institute, Emory University, Atlanta, Georgia, USA.
  • Feng Y; Department of Pharmacology and Chemical Biology, Emory University School of Medicine, Atlanta, Georgia, USA. Electronic address: yfeng@emory.edu.
J Biol Chem ; 300(8): 107595, 2024 Aug.
Article de En | MEDLINE | ID: mdl-39032650
ABSTRACT
The long noncoding RNA nuclear paraspeckle assembly transcript 1 (NEAT1) is involved in a variety of human cancers. Two overlapping NEAT1 isoforms, NEAT1_1 and NEAT1_2, are produced through mutually exclusive alternative 3' end formation. Previous studies extensively investigated NEAT1 dysregulation in tumors, but often failed to achieve distinct quantification of the two NEAT1 isoforms. Moreover, molecular mechanisms governing the biogenesis of NEAT1 isoforms and the functional impacts of their dysregulation in tumorigenesis remain poorly understood. In this study, we employed an isoform-specific quantification assay and found differential dysregulation of NEAT1 isoforms in patient-derived glioblastoma multiforme cells. We further showed usage of the NEAT1 proximal polyadenylation site (PAS) is a critical mechanism that controls glioma NEAT1 isoform production. CRISPR-Cas9-mediated PAS deletion reduced NEAT1_1 and reciprocally increased NEAT1_2, which enhanced nuclear paraspeckle formation in human glioma cells. Moreover, the utilization of the NEAT1 PAS is facilitated by the RNA-binding protein quaking (QKI), which binds to the proximal QKI recognition elements. Functionally, we identified transcriptomic changes and altered biological pathways caused by NEAT1 isoform imbalance in glioma cells, including the pathway for the regulation of cell migration. Finally, we demonstrated the forced increase of NEAT1_2 upon NEAT1 PAS deletion is responsible for driving glioma cell migration and promoting the expression of genes implicated in the regulation of cell migration. Together, our studies uncovered a novel mechanism that regulates NEAT1 isoforms and their functional impacts on the glioma transcriptome, which affects pathological pathways of glioma, represented by migration.
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Mouvement cellulaire / Protéines de liaison à l'ARN / Transcriptome / ARN long non codant / Gliome Limites: Humans Langue: En Journal: J Biol Chem Année: 2024 Type de document: Article Pays d'affiliation: États-Unis d'Amérique Pays de publication: États-Unis d'Amérique

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Mouvement cellulaire / Protéines de liaison à l'ARN / Transcriptome / ARN long non codant / Gliome Limites: Humans Langue: En Journal: J Biol Chem Année: 2024 Type de document: Article Pays d'affiliation: États-Unis d'Amérique Pays de publication: États-Unis d'Amérique