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PMID: 12198135 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

An iron-responsive element type II in the 5'-untranslated region of the Alzheimer's amyloid precursor protein transcript.

The Journal of biological chemistry ·Vol. 277 ·No. 47 ·2002-11-22 ·Pages 45518-28

Rogers JT, Randall JD, Cahill CM, Eder PS, Huang X, Gunshin H, Leiter L, McPhee J, Sarang SS, Utsuki T, Greig NH, Lahiri DK, Tanzi RE, Bush AI, Giordano T, Gullans SR

Abstract

Iron-responsive elements (IREs) are the RNA stem loops that control cellular iron homeostasis by regulating ferritin translation and transferrin receptor mRNA stability. We mapped a novel iron-responsive element (IRE-Type II) within the 5'-untranslated region (5'-UTR) of the Alzheimer's amyloid precursor protein (APP) transcript (+51 to +94 from the 5'-cap site). The APP mRNA IRE is located immediately upstream of an interleukin-1 responsive acute box domain (+101 to +146). APP 5'-UTR conferred translation was selectively down-regulated in response to intracellular iron chelation using three separate reporter assays (chloramphenicol acetyltransferase, luciferase, and red fluorescent protein reflecting an inhibition of APP holoprotein translation in response to iron chelation. Iron influx reversed this inhibition. As an internal control to ensure specificity, a viral internal ribosome entry sequence was unresponsive to intracellular iron chelation with desferrioxamine. Using RNA mobility shift assays, the APP 5'-UTRs, encompassing the IRE, bind specifically to recombinant iron-regulatory proteins (IRP) and to IRP from neuroblastoma cell lysates. IRP binding to the APP 5'-UTR is reduced after treatment of cells with desferrioxamine and increased after interleukin-1 stimulation. IRP binding is abrogated when APP cRNA probe is mutated in the core IRE domain (Delta4 bases:Delta83AGAG86). Iron regulation of APP mRNA through the APP 5'-UTR points to a role for iron in the metabolism of APP and confirms that this RNA structure can be a target for the selection of small molecule drugs, such as desferrioxamine (Fe chelator) and clioquinol (Fe, Cu, and Zn chelator), which reduce Abeta peptide burden during Alzheimer's disease.

MeSH Terms
5' Untranslated Regions/genetics Alzheimer Disease/genetics,metabolism Amyloid beta-Protein Precursor/genetics,metabolism Animals Base Sequence Calcium/metabolism Clioquinol/metabolism Deferoxamine/metabolism Enhancer Elements, Genetic Gene Expression Regulation Genes, Reporter Humans Interleukin-1/metabolism Iron/metabolism Iron Chelating Agents/metabolism Magnesium/metabolism Mice Molecular Sequence Data Nucleic Acid Conformation Protein Biosynthesis RNA, Messenger/metabolism Response Elements/genetics Tumor Cells, Cultured
Chemicals
5' Untranslated Regions Amyloid beta-Protein Precursor Interleukin-1 Iron Chelating Agents RNA, Messenger Clioquinol Iron Magnesium Deferoxamine Calcium
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Rogers Jack T
Genetics and Aging Research Unit, Department of Psychiatry, Massachusetts General Hospital, Charlestown, Massachusetts 02129-4404, USA.
Randall Jeffrey D
Cahill Catherine M
Eder Paul S
Huang Xudong
Gunshin Hiromi
Leiter Lorene
McPhee Jay
Sarang Satinder S
Utsuki Tada
Greig Nigel H
Lahiri Debomoy K
Tanzi Rudolph E
Bush Ashley I
Giordano Tony
Gullans Steve R
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-11-22
Epub
2002-00-26
Pages
45518-28
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIMH NIH HHS · 5K01MH02001 · United States
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