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miR-451 protects against erythroid oxidant stress by repressing 14-3-3ζ.

Authors :
Yu, Duonan
Santos, Camila O. dos
Zhao, Guowei
Jiang, Jing
Amigo, Julio D.
Khandros, Eugene
Dore, Louis C.
Yao, Yu
D'Souza, Janine
Zhang, Zhe
Ghaffari, Saghi
Choi, John
Friend, Sherree
Tong, Wei
Orange, Jordan S.
Paw, Barry H.
Weiss, Mitchell J.
Source :
Genes & Development. 8/1/2010, Vol. 24 Issue 15, p8-8. 1p.
Publication Year :
2010

Abstract

The bicistronic microRNA (miRNA) locus miR-144/451 is highly expressed during erythrocyte development, although its physiological roles are poorly understood. We show that miR-144/451 ablation in mice causes mild erythrocyte instability and increased susceptibility to damage after exposure to oxidant drugs. This phenotype is deeply conserved, as miR-451 depletion synergizes with oxidant stress to cause profound anemia in zebrafish embryos. At least some protective activities of miR-451 stem from its ability to directly suppress production of 14-3-3ζ phospho-serine/threonine-binding protein that inhibits nuclear accumulation of transcription factor FoxO3, a positive regulator of erythroid anti-oxidant genes. Thus, in miR-144/451^/^ erythroblasts, 14-3-3ζ accumulates, causing partial relocalization of FoxO3 from nucleus to cytoplasm with dampening of its transcriptional program, including anti-oxidant-encoding genes Cat and Gpx1. Supporting this mechanism, overexpression of 14-3-3ζ in erythroid cells and fibroblasts inhibits nuclear localization and activity of FoxO3. Moreover, shRNA suppression of 14-3-3ζ protects miR-144/451^/^ erythrocytes against peroxide-induced destruction, and restores catalase activity. Our findings define a novel miRNA-regulated pathway that protects erythrocytes against oxidant stress, and, more generally, illustrate how a miRNA can influence gene expression by altering the activity of a key transcription factor. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08909369
Volume :
24
Issue :
15
Database :
Academic Search Index
Journal :
Genes & Development
Publication Type :
Academic Journal
Accession number :
52961897