Absence of iron-regulatory protein Hfe results in hyperproliferation of retinal pigment epithelium: role of cystine/glutamate exchanger.

Absence of iron-regulatory protein Hfe results in hyperproliferation of retinal pigment epithelium: role of cystine/glutamate exchanger.
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DOI:
10.1042/bj20090424
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发表时间:
2009-11-11
期刊:
The Biochemical journal
影响因子:
--
通讯作者:
Ganapathy V
Ganapathy V
中科院分区:
其他
文献类型:
--
作者:
Gnana-Prakasam JP;Thangaraju M;Liu K;Ha Y;Martin PM;Smith SB;Ganapathy V

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Hemochromatosis is an iron overload disorder with age-dependent oxidative stress and dysfunction in a variety of tissues. Mutations in HFE are responsible for most cases with hemochromatosis. We recently demonstrated that Hfe is expressed exclusively in the basal membrane of retinal pigment epithelium (RPE). Here we used Hfe−/− mice to examine ferritin levels (an indirect readout for iron levels) and morphological changes in retina. We found increased ferritin accumulation in retina in 18-month-old but not in 2-month-old mice with considerable morphological damage compared to age-matched controls. The retinal phenotype included hypertrophy and hyperplasia of RPE. RPE cells isolated from Hfe−/− mice exhibited a hyperproliferative phenotype. We also compared the gene expression profile between wild type and Hfe−/− RPE cells by microarray analysis. These studies showed that many cell cycle-related genes were differentially regulated in Hfe−/− RPE cells. One of the genes upregulated in Hfe−/− RPE cells was Slc7a11 that codes for the ‘transporter proper’ xCT in the heterodimeric cystine/glutamate exchanger (xCT/4F2hc). This transporter plays a critical role in cellular glutathione status and cell cycle progression. We confirmed the microarrray data by monitoring xCT mRNA levels by RT-PCR and also by measuring transport function. We also found increased levels of glutathione and the transcription factor/cell cycle promoter AP1 in Hfe−/− RPE cells. Wild type mouse RPE cells and human RPE cell lines, when loaded with iron by exposure to ferric ammonium citrate, showed increased expression and activity of xCT, reproducing the biochemical phenotype observed with Hfe−/− RPE cells.