Global gene expression profile progression in Gaucher disease mouse models

<p>Abstract</p> <p>Background</p> <p>Gaucher disease is caused by defective glucocerebrosidase activity and the consequent accumulation of glucosylceramide. The pathogenic pathways resulting from lipid laden macrophages (Gaucher cells) in visceral organs and their abnor...

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Main Authors: Zhang Wujuan, Sun Ying, Aronow Bruce, Stringer Keith, Zamzow Matthew, Quinn Brian, Jia Li, Xu You-Hai, Setchell Kenneth DR, Grabowski Gregory A
Format: Article
Language:English
Published: BMC 2011-01-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/12/20
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spelling doaj-5c9dec64d2b942ecbfbc8f876a5ff4f02020-11-24T20:48:00ZengBMCBMC Genomics1471-21642011-01-011212010.1186/1471-2164-12-20Global gene expression profile progression in Gaucher disease mouse modelsZhang WujuanSun YingAronow BruceStringer KeithZamzow MatthewQuinn BrianJia LiXu You-HaiSetchell Kenneth DRGrabowski Gregory A<p>Abstract</p> <p>Background</p> <p>Gaucher disease is caused by defective glucocerebrosidase activity and the consequent accumulation of glucosylceramide. The pathogenic pathways resulting from lipid laden macrophages (Gaucher cells) in visceral organs and their abnormal functions are obscure.</p> <p>Results</p> <p>To elucidate this pathogenic pathway, developmental global gene expression analyses were conducted in distinct <it>Gba1 </it>point-mutated mice (V394L/V394L and D409 V/null). About 0.9 to 3% of genes had altered expression patterns (≥ ± 1.8 fold change), representing several categories, but particularly macrophage activation and immune response genes. Time course analyses (12 to 28 wk) of INFγ-regulated pro-inflammatory (13) and IL-4-regulated anti-inflammatory (11) cytokine/mediator networks showed tissue differential profiles in the lung and liver of the <it>Gba1 </it>mutant mice, implying that the lipid-storage macrophages were not functionally inert. The time course alterations of the INFγ and IL-4 pathways were similar, but varied in degree in these tissues and with the <it>Gba1 </it>mutation.</p> <p>Conclusions</p> <p>Biochemical and pathological analyses demonstrated direct relationships between the degree of tissue glucosylceramides and the gene expression profile alterations. These analyses implicate IFNγ-regulated pro-inflammatory and IL-4-regulated anti-inflammatory networks in differential disease progression with implications for understanding the Gaucher disease course and pathophysiology.</p> http://www.biomedcentral.com/1471-2164/12/20
collection DOAJ
language English
format Article
sources DOAJ
author Zhang Wujuan
Sun Ying
Aronow Bruce
Stringer Keith
Zamzow Matthew
Quinn Brian
Jia Li
Xu You-Hai
Setchell Kenneth DR
Grabowski Gregory A
spellingShingle Zhang Wujuan
Sun Ying
Aronow Bruce
Stringer Keith
Zamzow Matthew
Quinn Brian
Jia Li
Xu You-Hai
Setchell Kenneth DR
Grabowski Gregory A
Global gene expression profile progression in Gaucher disease mouse models
BMC Genomics
author_facet Zhang Wujuan
Sun Ying
Aronow Bruce
Stringer Keith
Zamzow Matthew
Quinn Brian
Jia Li
Xu You-Hai
Setchell Kenneth DR
Grabowski Gregory A
author_sort Zhang Wujuan
title Global gene expression profile progression in Gaucher disease mouse models
title_short Global gene expression profile progression in Gaucher disease mouse models
title_full Global gene expression profile progression in Gaucher disease mouse models
title_fullStr Global gene expression profile progression in Gaucher disease mouse models
title_full_unstemmed Global gene expression profile progression in Gaucher disease mouse models
title_sort global gene expression profile progression in gaucher disease mouse models
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2011-01-01
description <p>Abstract</p> <p>Background</p> <p>Gaucher disease is caused by defective glucocerebrosidase activity and the consequent accumulation of glucosylceramide. The pathogenic pathways resulting from lipid laden macrophages (Gaucher cells) in visceral organs and their abnormal functions are obscure.</p> <p>Results</p> <p>To elucidate this pathogenic pathway, developmental global gene expression analyses were conducted in distinct <it>Gba1 </it>point-mutated mice (V394L/V394L and D409 V/null). About 0.9 to 3% of genes had altered expression patterns (≥ ± 1.8 fold change), representing several categories, but particularly macrophage activation and immune response genes. Time course analyses (12 to 28 wk) of INFγ-regulated pro-inflammatory (13) and IL-4-regulated anti-inflammatory (11) cytokine/mediator networks showed tissue differential profiles in the lung and liver of the <it>Gba1 </it>mutant mice, implying that the lipid-storage macrophages were not functionally inert. The time course alterations of the INFγ and IL-4 pathways were similar, but varied in degree in these tissues and with the <it>Gba1 </it>mutation.</p> <p>Conclusions</p> <p>Biochemical and pathological analyses demonstrated direct relationships between the degree of tissue glucosylceramides and the gene expression profile alterations. These analyses implicate IFNγ-regulated pro-inflammatory and IL-4-regulated anti-inflammatory networks in differential disease progression with implications for understanding the Gaucher disease course and pathophysiology.</p>
url http://www.biomedcentral.com/1471-2164/12/20
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