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Loss of miR-17~92 results in dysregulation of Cftr in nephron progenitors.
Phua, Yu Leng; Chen, Kevin Hong; Hemker, Shelby L; Marrone, April K; Bodnar, Andrew J; Liu, Xiaoning; Clugston, Andrew; Kostka, Dennis; Butterworth, Michael B; Ho, Jacqueline.
Afiliação
  • Phua YL; Rangos Research Center, UPMC Children's Hospital of Pittsburgh , Pittsburgh, Pennsylvania.
  • Chen KH; Division of Nephrology, Department of Pediatrics, University of Pittsburgh School of Medicine , Pittsburgh, Pennsylvania.
  • Hemker SL; Rangos Research Center, UPMC Children's Hospital of Pittsburgh , Pittsburgh, Pennsylvania.
  • Marrone AK; Department of Biological Sciences, Carnegie Mellon University , Pittsburgh, Pennsylvania.
  • Bodnar AJ; Rangos Research Center, UPMC Children's Hospital of Pittsburgh , Pittsburgh, Pennsylvania.
  • Liu X; Division of Nephrology, Department of Pediatrics, University of Pittsburgh School of Medicine , Pittsburgh, Pennsylvania.
  • Clugston A; Rangos Research Center, UPMC Children's Hospital of Pittsburgh , Pittsburgh, Pennsylvania.
  • Kostka D; Division of Nephrology, Department of Pediatrics, University of Pittsburgh School of Medicine , Pittsburgh, Pennsylvania.
  • Butterworth MB; Rangos Research Center, UPMC Children's Hospital of Pittsburgh , Pittsburgh, Pennsylvania.
  • Ho J; Division of Nephrology, Department of Pediatrics, University of Pittsburgh School of Medicine , Pittsburgh, Pennsylvania.
Am J Physiol Renal Physiol ; 316(5): F993-F1005, 2019 05 01.
Article em En | MEDLINE | ID: mdl-30838872
ABSTRACT
We have previously demonstrated that loss of miR-17~92 in nephron progenitors in a mouse model results in renal hypodysplasia and chronic kidney disease. Clinically, decreased congenital nephron endowment because of renal hypodysplasia is associated with an increased risk of hypertension and chronic kidney disease, and this is at least partly dependent on the self-renewal of nephron progenitors. Here, we present evidence for a novel molecular mechanism regulating the self-renewal of nephron progenitors and congenital nephron endowment by the highly conserved miR-17~92 cluster. Whole transcriptome sequencing revealed that nephron progenitors lacking this cluster demonstrated increased Cftr expression. We showed that one member of the cluster, miR-19b, is sufficient to repress Cftr expression in vitro and that perturbation of Cftr activity in nephron progenitors results in impaired proliferation. Together, these data suggest that miR-19b regulates Cftr expression in nephron progenitors, with this interaction playing a role in appropriate nephron progenitor self-renewal during kidney development to generate normal nephron endowment.
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Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Células-Tronco / Regulador de Condutância Transmembrana em Fibrose Cística / MicroRNAs / Néfrons Limite: Animals Idioma: En Revista: Am J Physiol Renal Physiol Assunto da revista: FISIOLOGIA / NEFROLOGIA Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Células-Tronco / Regulador de Condutância Transmembrana em Fibrose Cística / MicroRNAs / Néfrons Limite: Animals Idioma: En Revista: Am J Physiol Renal Physiol Assunto da revista: FISIOLOGIA / NEFROLOGIA Ano de publicação: 2019 Tipo de documento: Article