TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in Macrophages

Pathogenic bacteria have evolved multiple mechanisms to capture iron or iron-containing heme from host tissues or blood. In response, organisms have developed defense mechanisms to keep iron from pathogens. Very little of the body’s iron store is available as free heme; rather nearly all body iron i...

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Main Authors: Mary Philip, Edison Y. Chiu, Adeline M. Hajjar, Janis L. Abkowitz
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Journal of Immunology Research
Online Access:http://dx.doi.org/10.1155/2016/4039038
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spelling doaj-e32d826364e4450abc4adb79494a345e2020-11-25T02:29:37ZengHindawi LimitedJournal of Immunology Research2314-88612314-71562016-01-01201610.1155/2016/40390384039038TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in MacrophagesMary Philip0Edison Y. Chiu1Adeline M. Hajjar2Janis L. Abkowitz3Division of Hematology, University of Washington, Seattle, WA 98195, USADivision of Hematology, University of Washington, Seattle, WA 98195, USADepartment of Comparative Medicine, University of Washington, Seattle, WA 98195, USADivision of Hematology, University of Washington, Seattle, WA 98195, USAPathogenic bacteria have evolved multiple mechanisms to capture iron or iron-containing heme from host tissues or blood. In response, organisms have developed defense mechanisms to keep iron from pathogens. Very little of the body’s iron store is available as free heme; rather nearly all body iron is complexed with heme or other proteins. The feline leukemia virus, subgroup C (FeLV-C) receptor, FLVCR, exports heme from cells. It was unknown whether FLVCR regulates heme-iron availability after infection, but given that other heme regulatory proteins are upregulated in macrophages in response to bacterial infection, we hypothesized that macrophages dynamically regulate FLVCR. We stimulated murine primary macrophages or macrophage cell lines with LPS and found that Flvcr is rapidly downregulated in a TLR4/MD2-dependent manner; TLR1/2 and TLR3 stimulation also decreased Flvcr expression. We identified several candidate TLR-activated transcription factors that can bind to the Flvcr promoter. Macrophages must balance the need to sequester iron from systemic circulating or intracellular pathogens with the macrophage requirement for heme and iron to produce reactive oxygen species. Our findings underscore the complexity of this regulation and point to a new role for FLVCR and heme export in macrophages responses to infection and inflammation.http://dx.doi.org/10.1155/2016/4039038
collection DOAJ
language English
format Article
sources DOAJ
author Mary Philip
Edison Y. Chiu
Adeline M. Hajjar
Janis L. Abkowitz
spellingShingle Mary Philip
Edison Y. Chiu
Adeline M. Hajjar
Janis L. Abkowitz
TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in Macrophages
Journal of Immunology Research
author_facet Mary Philip
Edison Y. Chiu
Adeline M. Hajjar
Janis L. Abkowitz
author_sort Mary Philip
title TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in Macrophages
title_short TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in Macrophages
title_full TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in Macrophages
title_fullStr TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in Macrophages
title_full_unstemmed TLR Stimulation Dynamically Regulates Heme and Iron Export Gene Expression in Macrophages
title_sort tlr stimulation dynamically regulates heme and iron export gene expression in macrophages
publisher Hindawi Limited
series Journal of Immunology Research
issn 2314-8861
2314-7156
publishDate 2016-01-01
description Pathogenic bacteria have evolved multiple mechanisms to capture iron or iron-containing heme from host tissues or blood. In response, organisms have developed defense mechanisms to keep iron from pathogens. Very little of the body’s iron store is available as free heme; rather nearly all body iron is complexed with heme or other proteins. The feline leukemia virus, subgroup C (FeLV-C) receptor, FLVCR, exports heme from cells. It was unknown whether FLVCR regulates heme-iron availability after infection, but given that other heme regulatory proteins are upregulated in macrophages in response to bacterial infection, we hypothesized that macrophages dynamically regulate FLVCR. We stimulated murine primary macrophages or macrophage cell lines with LPS and found that Flvcr is rapidly downregulated in a TLR4/MD2-dependent manner; TLR1/2 and TLR3 stimulation also decreased Flvcr expression. We identified several candidate TLR-activated transcription factors that can bind to the Flvcr promoter. Macrophages must balance the need to sequester iron from systemic circulating or intracellular pathogens with the macrophage requirement for heme and iron to produce reactive oxygen species. Our findings underscore the complexity of this regulation and point to a new role for FLVCR and heme export in macrophages responses to infection and inflammation.
url http://dx.doi.org/10.1155/2016/4039038
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