4.5 Article

Inhibition of transferrin receptor 1 transcription by a cell density response element

Journal

BIOCHEMICAL JOURNAL
Volume 392, Issue -, Pages 383-388

Publisher

PORTLAND PRESS LTD
DOI: 10.1042/BJ20050492

Keywords

cell density; iron responsive element (IRE); iron regulatory protein (IRP); iron metabolism; transferrin receptor 1(TfR1)

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TfFR 1 (transferrin receptor 1) mediates the uptake of transferrin-bound iron and thereby plays a critical role in cellular iron metabolism. Its expression is coupled to cell proliferation/differentiation and controlled in response to iron levels and other signals by transcriptional and post-transcriptional mechanisms. It is well established that TfR 1 levels decline when cultured cells reach a high density and in the present Study we have investigated the underlying mechanisms. Consistent with previous findings, we demonstrate that TfR 1 expression is attenuated in a cell-density-dependent manner in human lung cancer H1299 cells and in murine B6 fibroblasts as the result of a marked decrease in mRNA content. This response is not associated with alterations in the RNA-binding activity of iron regulatory proteins that are indicative of a transcriptional mechanism. Reporter assays reveal that the human TfR 1 promoters contains sequences mediating cell-density-dependent transcriptional inhibition. Mapping of the human and mouse TfR 1 promoters identified a conserved hexa-nucleotide 5'-GAGGGC-3' motif with notable sequence similarity to a previously described element within the IGF-2 (insulin-like growth factor-2) promoter. We show that this motif is necessary for the formation of specific complexes with nuclear extracts and for cell-density-dependent regulation in reporter gene assays. Thus the TfR 1 promoter contains a functional 'cell density response element' (CDRE).

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