| Title |
Repression of ferritin light chain translation by human eIF3
|
|---|---|
| Published in |
bioRxiv, May 2018
|
| DOI | 10.1101/316299 |
| Authors |
Mia C. Pulos-Holmes, Daniel N. Srole, Amy S. Y. Lee, Maria G. Juarez, David T. McSwiggen, Nicholas T. Ingolia, Jamie H. D. Cate |
| Abstract |
A central problem in human biology remains the discovery of causal molecular links between mutations identified in genome-wide association studies (GWAS) and their corresponding disease traits. This challenge is magnified for variants residing in non-coding regions of the genome. Single-nucleotide polymorphisms (SNPs) in the 5 untranslated region (5-UTR) of the ferritin light chain (FTL) gene that cause hyperferritinemia are thought to disrupt translation repression by altering iron regulatory protein (IRP) interactions with the FTL mRNA 5-UTR. Here, we show that human eukaryotic translation initiation factor 3 (eIF3) acts as a distinct repressor of FTL mRNA translation, and eIF3-mediated FTL repression is disrupted by a subset of SNPs in FTL that cause hyperferritinemia. These results identify a direct role for eIF3-mediated translational control in a specific human disease. |
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X Demographics
Geographical breakdown
| Country | Count | As % |
|---|---|---|
| United States | 4 | 67% |
| United Kingdom | 2 | 33% |
Demographic breakdown
| Type | Count | As % |
|---|---|---|
| Members of the public | 4 | 67% |
| Scientists | 2 | 33% |