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Long Noncoding RNA TYKRIL Plays a Role in Pulmonary Hypertension via the p53-mediated Regulation of PDGFRß.
Zehendner, Christoph M; Valasarajan, Chanil; Werner, Astrid; Boeckel, Jes-Niels; Bischoff, Florian C; John, David; Weirick, Tyler; Glaser, Simone F; Rossbach, Oliver; Jaé, Nicolas; Demolli, Shemsi; Khassafi, Fatemeh; Yuan, Ke; de Jesus Perez, Vinicio A; Michalik, Katharina M; Chen, Wei; Seeger, Werner; Guenther, Andreas; Wasnick, Roxana M; Uchida, Shizuka; Zeiher, Andreas M; Dimmeler, Stefanie; Pullamsetti, Soni S.
Afiliação
  • Zehendner CM; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Valasarajan C; ZIM III, Department of Cardiology, Goethe University, Frankfurt am Main, Germany.
  • Werner A; German Center for Cardiovascular Research, DZHK, Berlin, Germany.
  • Boeckel JN; Department of Lung Development and Remodeling, Max Planck Institute for Heart and Lung Research, member of the German Center for Lung Research (DZL), Bad Nauheim, Germany.
  • Bischoff FC; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • John D; ZIM III, Department of Cardiology, Goethe University, Frankfurt am Main, Germany.
  • Weirick T; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Glaser SF; German Center for Cardiovascular Research, DZHK, Berlin, Germany.
  • Rossbach O; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Jaé N; ZIM III, Department of Cardiology, Goethe University, Frankfurt am Main, Germany.
  • Demolli S; German Center for Cardiovascular Research, DZHK, Berlin, Germany.
  • Khassafi F; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Yuan K; German Center for Cardiovascular Research, DZHK, Berlin, Germany.
  • de Jesus Perez VA; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Michalik KM; German Center for Cardiovascular Research, DZHK, Berlin, Germany.
  • Chen W; Cardiovascular Innovation Institute, University of Louisville, Louisville, Kentucky.
  • Seeger W; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Guenther A; German Center for Cardiovascular Research, DZHK, Berlin, Germany.
  • Wasnick RM; Department of Biology and Chemistry, Institute of Biochemistry, University of Giessen, Giessen, Germany.
  • Uchida S; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Zeiher AM; Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, and.
  • Dimmeler S; Department of Lung Development and Remodeling, Max Planck Institute for Heart and Lung Research, member of the German Center for Lung Research (DZL), Bad Nauheim, Germany.
  • Pullamsetti SS; Division of Pulmonary and Critical Care Medicine, Stanford University, Stanford, California.
Am J Respir Crit Care Med ; 202(10): 1445-1457, 2020 11 15.
Article em En | MEDLINE | ID: mdl-32634060
ABSTRACT
Rationale Long noncoding RNAs (lncRNAs) are emerging as important regulators of diverse biological functions. Their role in pulmonary arterial hypertension (PAH) remains to be explored.

Objectives:

To elucidate the role of TYKRIL (tyrosine kinase receptor-inducing lncRNA) as a regulator of p53/ PDGFRß (platelet-derived growth factor receptor ß) signaling pathway and to investigate its role in PAH.

Methods:

Pericytes and pulmonary arterial smooth muscle cells exposed to hypoxia and derived from patients with idiopathic PAH were analyzed with RNA sequencing. TYKRIL knockdown was performed in above-mentioned human primary cells and in precision-cut lung slices derived from patients with PAH.Measurements and Main

Results:

Using RNA sequencing data, TYKRIL was identified to be consistently upregulated in pericytes and pulmonary arterial smooth muscles cells exposed to hypoxia and derived from patients with idiopathic PAH. TYKRIL knockdown reversed the proproliferative (n = 3) and antiapoptotic (n = 3) phenotype induced under hypoxic and idiopathic PAH conditions. Owing to the poor species conservation of TYKRIL, ex vivo studies were performed in precision-cut lung slices from patients with PAH. Knockdown of TYKRIL in precision-cut lung slices decreased the vascular remodeling (n = 5). The number of proliferating cell nuclear antigen-positive cells in the vessels was decreased and the number of terminal deoxynucleotide transferase-mediated dUTP nick end label-positive cells in the vessels was increased in the LNA (locked nucleic acid)-treated group compared with control. Expression of PDGFRß, a key player in PAH, was found to strongly correlate with TYKRIL expression in the patient samples (n = 12), and TYKRIL knockdown decreased PDGFRß expression (n = 3). From the transcription factor-screening array, it was observed that TYKRIL knockdown increased the p53 activity, a known repressor of PDGFRß. RNA immunoprecipitation using various p53 mutants demonstrated that TYKRIL binds to the N-terminal of p53 (an important region for p300 interaction with p53). The proximity ligation assay revealed that TYKRIL interferes with the p53-p300 interaction (n = 3) and regulates p53 nuclear translocation.

Conclusions:

TYKRIL plays an important role in PAH by regulating the p53/PDGFRß axis.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas Tirosina Quinases / Transdução de Sinais / Expressão Gênica / Receptor beta de Fator de Crescimento Derivado de Plaquetas / RNA Longo não Codificante / Hipertensão Pulmonar Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas Tirosina Quinases / Transdução de Sinais / Expressão Gênica / Receptor beta de Fator de Crescimento Derivado de Plaquetas / RNA Longo não Codificante / Hipertensão Pulmonar Idioma: En Ano de publicação: 2020 Tipo de documento: Article