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Heme Curation v0.0.1-dev

Mechanistic knowledge surrounding heme

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path(MESH:Anemia) increases act(r(MGI:Epo), ma(tscript)) View Subject | View Object

During anemia (n  6), kidney EPO mRNA transcription increased 20-fold relative to control mice (n  5, P  0.001; Fig. 9A). PubMed:29351418

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Kidney
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path(MESH:Anemia) causesNoChange act(r(MGI:Epo), ma(tscript)) View Subject | View Object

Heart EPO mRNA transcription was not significantly different in anemic mice relative to control mice (P  0.35). PubMed:29351418

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Heart
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path(MESH:Anemia) increases r(MGI:Epo) View Subject | View Object

Despite the preserved tissue PO2 level during subacute anemia, we demonstrated an increase in HIF-dependent mRNA levels of EPO, HO-1, and GAPDH. This finding is consistent with other experimental studies that have also demonstrated increases in HIF-dependent mRNA expression in the absence of a clear reduction in brain PtO2 (12, 23). PubMed:29351418

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Brain
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Anemia
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Discussion

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BEL Commons is developed and maintained in an academic capacity by Charles Tapley Hoyt and Daniel Domingo-Fernández at the Fraunhofer SCAI Department of Bioinformatics with support from the IMI project, AETIONOMY. It is built on top of PyBEL, an open source project. Please feel free to contact us here to give us feedback or report any issues. Also, see our Publishing Notes and Data Protection information.

If you find BEL Commons useful in your work, please consider citing: Hoyt, C. T., Domingo-Fernández, D., & Hofmann-Apitius, M. (2018). BEL Commons: an environment for exploration and analysis of networks encoded in Biological Expression Language. Database, 2018(3), 1–11.