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Gene Expression

RNA-Binding Protein HuR Is Required for Stabilization of SLC11A1 mRNA and SLC11A1 Protein Expression

, , , &
Pages 8139-8149 | Received 07 Mar 2005, Accepted 30 Jun 2005, Published online: 27 Mar 2023
 

Abstract

The solute carrier family 11 member 1 (SLC11A1, formerly NRAMP1) gene is associated with infectious and autoimmune diseases and plays an important role in macrophage activation. Human SLC11A1 mRNA contains an AU-rich element (ARE) within the 3′ untranslated region; however, its role in the regulation of SLC11A1 gene expression has not been elucidated. Here we analyze the expression of SLC11A1 in human monocytes and HL-60 cells and then use HL-60 cells as a model to determine whether RNA-binding protein HuR is associated with the ARE and involved in SLC11A1 mRNA turnover. Our results demonstrate a binding of HuR to the SLC11A1 ARE in phorbol myristate acetate (PMA)-differentiated cells dramatically increased compared to that in undifferentiated cells. Interestingly, PMA-induced accumulation of cytoplasmic HuR occurs in parallel with an increase in the binding of HuR to SLC11A1 ARE and with an increase in the SLC11A1 mRNA level. This suggests that HuR's cytoplasmic localization plays an important role in the regulation of SLC11A1 expression. We also observe that down-regulation of HuR expression by RNA interference (RNAi) results in a decrease in SLC11A1 expression which can be restored by the addition of recombinant HuR protein to the RNAi-treated cells. Finally, we show that HuR overexpression in HL-60 cells significantly increases the SLC11A1 mRNA stability. Taken together, our data demonstrate that HuR is a key mediator of posttranscriptional regulation and expression of the SLC11A1 gene.

ACKNOWLEDGMENTS

We are grateful to Rachid Mazroui for his help with the fluorescence microscopy analysis, to James Garnon for many helpful technical suggestions, to Maryse Thivierge for monocyte preparation, and to Marie-Linda Boghdady and Dominigue Marion for a critical review of the text.

This work was supported by Canadian Institute of Health Research Grant FRN #36337 (6033; D.R.) and Strategic Training Centre in Infectious Diseases and Autoimmunity CIHR Grant (Y.Z.X.)

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