4-Hydroxynonenal impairs miRNA maturation in heart failure via Dicer post-translational modification
European Heart Journal

Abstract
Developing novel therapies to battle the global public health burden of heart failure remains challenging. This study investigates the underlying mechanisms and potential treatment for 4-hydroxynonenal (4-HNE) deleterious effects in heart failure.
Biochemical, functional, and histochemical measurements were applied to identify 4-HNE adducts in rat and human failing hearts.
4-HNE, a reactive aldehyde by-product of mitochondrial dysfunction in heart failure, covalently inhibits Dicer, an RNase III endonuclease essential for microRNA (miRNA) biogenesis. 4-HNE inhibition of Dicer impairs miRNA processing. Mechanistically, 4-HNE binds to recombinant human Dicer through an intermolecular interaction that disrupts both activity and stability of Dicer in a concentration- and time-dependent manner. Dithiothreitol neutralization of 4-HNE or replacing 4-HNE-targeted residues in Dicer prevents 4-HNE inhibition of Dicer
4-HNE inhibition of Dicer directly impairs miRNA biogenesis in heart failure. Strikingly, decreasing cardiac 4-HNE levels through pharmacological ALDH2 activation is sufficient to re-establish Dicer activity and miRNA biogenesis; thereby representing potential treatment for patients with heart failure.
Contributors

Ligia A Kiyuna
Author

Darlan S Candido
Author

Luiz R G Bechara
Author

Itamar C G Jesus
Author

Lisley S Ramalho
Author

Barbara Krum
Author

Ruda P Albuquerque
Author

Juliane C Campos
Author

Luiz H M Bozi
Author

Vanessa O Zambelli
Author

Ariane N Alves
Author

Nicolás Campolo
Author

Mauricio Mastrogiovanni
Author

Silvina Bartesaghi
Author

Alejandro Leyva
Author

Rosario Durán
Author

Rafael Radi
Author

Guilherme M Arantes
Author

Edécio Cunha-Neto
Author

Marcelo A Mori
Author

Che-Hong Chen
Author

Wenjin Yang
Author

Daria Mochly-Rosen
Author

Ian J MacRae
Author

Ludmila R P Ferreira
Author

Julio C B Ferreira
Author
You may be interested in


