Literature DB >> 11714692

An mRNA loop/bulge in the ferritin iron-responsive element forms in vivo and Was detected by radical probing with Cu-1,10-phenantholine and iron regulatory protein footprinting.

Yaohuang Ke1, Elizabeth C Theil.   

Abstract

Messenger RNA (mRNA) regulatory elements often form helices specifically distorted by loops or bulges, which control protein synthesis rates in vitro. Do such three-dimensional RNA structures form in vivo? We now observe formation of the internal loop/bulge (IL/B structure) in the IRE (iron-responsive element) of ferritin mRNA expressed in HeLa cells, using radical cleavage with Cu-phen (Cu-1,10-phenantholine), and protection of the loop/bulge by the regulatory protein (IRP), expressed by cotransfection. Cu-phen, a metal coordination complex (MC) selected because of binding and cleavage at the IL/B in solution, recognized the same site in mRNA in HeLa cells. Endogenous reductants apparently substituted for the sulfhydryl activation of Cu-phen cleavage in solution. Selective RNA IL/B recognition by Cu-phen in vivo is emphasized by resistance to cleavage of a mutated, IL/B IRE in ferritin mRNA. Development of small MCs even more selective than Cu-phen can exploit three-dimensional mRNA or viral RNA structures in vivo to manipulate RNA function. Formation in vivo of the IL/B in the ferritin IRE, which is associated in vitro with greater repression than single IRE structures in other mRNAs, likely contributes to larger derepression of ferritin synthesis in vivo triggered by signals for the IRE/IRP system.

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Year:  2001        PMID: 11714692     DOI: 10.1074/jbc.C100614200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  11 in total

1.  A plant virus replication system to assay the formation of RNA pseudotriloop motifs in RNA-protein interactions.

Authors:  P C Joost Haasnoot; John F Bol; René C L Olsthoorn
Journal:  Proc Natl Acad Sci U S A       Date:  2003-10-20       Impact factor: 11.205

Review 2.  RNA folding in living cells.

Authors:  Georgeta Zemora; Christina Waldsich
Journal:  RNA Biol       Date:  2010-11-01       Impact factor: 4.652

Review 3.  Molecular control of vertebrate iron homeostasis by iron regulatory proteins.

Authors:  Michelle L Wallander; Elizabeth A Leibold; Richard S Eisenstein
Journal:  Biochim Biophys Acta       Date:  2006-05-17

Review 4.  Mammalian iron metabolism and its control by iron regulatory proteins.

Authors:  Cole P Anderson; Macy Shen; Richard S Eisenstein; Elizabeth A Leibold
Journal:  Biochim Biophys Acta       Date:  2012-05-17

5.  Selectivity at a three-base bulge site in the DNA binding of DeltaDelta-[{Ru(phen)2} 2(mu-dppm)]4+ [dppm is 4,6-bis(2-pyridyl)pyrimidine; phen is 1,10-phenanthroline].

Authors:  Joy L Morgan; Damian P Buck; Adam G Turley; J Grant Collins; F Richard Keene
Journal:  J Biol Inorg Chem       Date:  2006-06-28       Impact factor: 3.358

6.  The up-regulation of ferritin expression using a small-molecule ligand to the native mRNA.

Authors:  Jennifer D Tibodeau; Paige M Fox; Patricia A Ropp; Elizabeth C Theil; H Holden Thorp
Journal:  Proc Natl Acad Sci U S A       Date:  2005-12-28       Impact factor: 11.205

7.  Iron responsive mRNAs: a family of Fe2+ sensitive riboregulators.

Authors:  Dixie J Goss; Elizabeth C Theil
Journal:  Acc Chem Res       Date:  2011-10-25       Impact factor: 22.384

8.  Ferritin iron minerals are chelator targets, antioxidants, and coated, dietary iron.

Authors:  Elizabeth C Theil
Journal:  Ann N Y Acad Sci       Date:  2010-08       Impact factor: 5.691

Review 9.  Living with iron (and oxygen): questions and answers about iron homeostasis.

Authors:  Elizabeth C Theil; Dixie J Goss
Journal:  Chem Rev       Date:  2009-10       Impact factor: 60.622

10.  Noncoding variation of the gene for ferritin light chain in hereditary and age-related cataract.

Authors:  Thomas M Bennett; Giovanni Maraini; Chongfei Jin; Wenmin Sun; J Fielding Hejtmancik; Alan Shiels
Journal:  Mol Vis       Date:  2013-04-11       Impact factor: 2.367

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