Literature DB >> 11557513

Cloning and gastrointestinal expression of rat hephaestin: relationship to other iron transport proteins.

D M Frazer1, C D Vulpe, A T McKie, S J Wilkins, D Trinder, G J Cleghorn, G J Anderson.   

Abstract

The membrane-bound ceruloplasmin homolog hephaestin plays a critical role in intestinal iron absorption. The aims of this study were to clone the rat hephaestin gene and to examine its expression in the gastrointestinal tract in relation to other genes encoding iron transport proteins. The rat hephaestin gene was isolated from intestinal mRNA and was found to encode a protein 96% identical to mouse hephaestin. Analysis by ribonuclease protection assay and Western blotting showed that hephaestin was expressed at high levels throughout the small intestine and colon. Immunofluorescence localized the hephaestin protein to the mature villus enterocytes with little or no expression in the crypts. Variations in iron status had a small but nonsignificant effect on hephaestin expression in the duodenum. The high sequence conservation between rat and mouse hephaestin is consistent with this protein playing a central role in intestinal iron absorption, although its precise function remains to be determined.

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Year:  2001        PMID: 11557513     DOI: 10.1152/ajpgi.2001.281.4.G931

Source DB:  PubMed          Journal:  Am J Physiol Gastrointest Liver Physiol        ISSN: 0193-1857            Impact factor:   4.052


  35 in total

1.  Delayed hepcidin response explains the lag period in iron absorption following a stimulus to increase erythropoiesis.

Authors:  D M Frazer; H R Inglis; S J Wilkins; K N Millard; T M Steele; G D McLaren; A T McKie; C D Vulpe; G J Anderson
Journal:  Gut       Date:  2004-10       Impact factor: 23.059

2.  Immunoreactive hephaestin and ferroxidase activity are present in the cytosolic fraction of rat enterocytes.

Authors:  Perungavur N Ranganathan; Yan Lu; Brie K Fuqua; James F Collins
Journal:  Biometals       Date:  2012-02-17       Impact factor: 2.949

Review 3.  Recent advances in intestinal iron transport.

Authors:  Gregory J Anderson; David M Frazer
Journal:  Curr Gastroenterol Rep       Date:  2005-10

Review 4.  Redox cycling in iron uptake, efflux, and trafficking.

Authors:  Daniel J Kosman
Journal:  J Biol Chem       Date:  2010-06-03       Impact factor: 5.157

Review 5.  Copper active sites in biology.

Authors:  Edward I Solomon; David E Heppner; Esther M Johnston; Jake W Ginsbach; Jordi Cirera; Munzarin Qayyum; Matthew T Kieber-Emmons; Christian H Kjaergaard; Ryan G Hadt; Li Tian
Journal:  Chem Rev       Date:  2014-03-03       Impact factor: 60.622

6.  Modulation of iron transport proteins in human colorectal carcinogenesis.

Authors:  M J Brookes; S Hughes; F E Turner; G Reynolds; N Sharma; T Ismail; G Berx; A T McKie; N Hotchin; G J Anderson; T Iqbal; C Tselepis
Journal:  Gut       Date:  2006-04-26       Impact factor: 23.059

7.  Changes in the expression of intestinal iron transport and hepatic regulatory molecules explain the enhanced iron absorption associated with pregnancy in the rat.

Authors:  K N Millard; D M Frazer; S J Wilkins; G J Anderson
Journal:  Gut       Date:  2004-05       Impact factor: 23.059

Review 8.  The SLC40 basolateral iron transporter family (IREG1/ferroportin/MTP1).

Authors:  Andrew T McKie; David J Barlow
Journal:  Pflugers Arch       Date:  2003-06-27       Impact factor: 3.657

9.  Caco-2 intestinal epithelial cells absorb soybean ferritin by mu2 (AP2)-dependent endocytosis.

Authors:  Carol D San Martin; Carolina Garri; Fernando Pizarro; Tomas Walter; Elizabeth C Theil; Marco T Núñez
Journal:  J Nutr       Date:  2008-04       Impact factor: 4.798

10.  Mislocalisation of hephaestin, a multicopper ferroxidase involved in basolateral intestinal iron transport, in the sex linked anaemia mouse.

Authors:  Y M Kuo; T Su; H Chen; Z Attieh; B A Syed; A T McKie; G J Anderson; J Gitschier; C D Vulpe
Journal:  Gut       Date:  2004-02       Impact factor: 23.059

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