Abstract
Iron stimulates ferritin synthesis in whole cells and animals, by increasing the entry of ferritin mRNA into polyribosomes. Dissection of the regulation at the molecular level has identified a 28-nucleotide, conserved, regulatory sequence (IRE = iron regulatory element) in the 5' non-coding region of ferritin mRNAs, plus trans-acting factor(s), one of which is a 90-kDa protein. The site of iron action is not entirely characterized but may involve heme; sequences in the 3' non-coding region of ferritin mRNA can modulate regulation. Ferritin mRNA is the first eukaryotic mRNA for which a conserved regulatory sequence and regulator protein have been identified. The same RNA-protein motif is used, through iron-dependent degradation of transferrin receptor mRNA, to decrease synthesis of the receptor and cellular iron uptake. The regulatory structure of the transferrin receptor mRNA is composed, in part, of five copies of the IRE in the 3' non-coding region. IRE structure, probed by cleavage with RNases T1, V1, 1,10-phenanthroline-Cu or modification with dimethyl sulfate, is a hairpin loop with conformational variations dependent on magnesium; a base-paired region flanking the IRE is also structurally sensitive to magnesium. Similar results were obtained with a synthetic 55-mer containing the IRE and with a full-length in vitro transcript with a G----A substitution in the loop.(ABSTRACT TRUNCATED AT 250 WORDS)
MeSH Terms
Base Sequence
Ferritins/genetics,metabolism
Genes, Regulator
Iron/metabolism
Molecular Probes
Molecular Sequence Data
Nucleic Acid Conformation
Phenanthrolines
RNA, Messenger/chemistry,genetics
Ribonucleases
Sulfuric Acid Esters
Chemicals
Molecular Probes
Phenanthrolines
RNA, Messenger
Sulfuric Acid Esters
bis(1,10-phenanthroline)copper(2+) ion
Ferritins
Iron
Ribonucleases
dimethyl sulfate
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Wang Y H
Department of Biochemistry, North Carolina State University, Raleigh 27695-7622.
Lin P N
Sczekan S R
McKenzie R A
Theil E C
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