<?xml version="1.0" encoding="ASCII"?>
<biogps><data><item><item key="slug">hematopoietic-stem-cell-differentiation-regulated</item><item key="factor_count">0</item><item key="sample_count">4</item><item key="tags"><item>cell</item><item>chromatin</item><item>genome</item><item>protein</item><item>stem cell</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-19502</item><item key="id">5930</item><item key="name">Hematopoietic Stem Cell Differentiation Regulated by a Single Ubiquitin Ligase: Substrate Complex</item></item><item><item key="slug">hepatic-acute-phase-proteins-control-innate-immune</item><item key="factor_count">2</item><item key="sample_count">12</item><item key="tags"><item>cancer</item><item>cell</item><item>hepatocyte</item><item>liver</item><item>serum</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-22009</item><item key="id">6097</item><item key="name">Hepatic acute phase proteins control innate immune responses during infection by promoting myeloid derived suppressor cell function</item></item><item><item key="slug">hepatic-gene-expression-during-liver-regeneration</item><item key="factor_count">3</item><item key="sample_count">35</item><item key="tags"><item>cell</item><item>liver</item><item>organ</item><item>protein</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-20426</item><item key="id">5987</item><item key="name">Hepatic gene expression during liver regeneration in response to partial hepatectomy: late time points (24h, 38h, 48h)</item></item><item><item key="slug">hepatic-gene-expression-during-the-development-of</item><item key="factor_count">0</item><item key="sample_count">5</item><item key="tags"><item>bile duct</item><item>biliary atresia</item><item>biliary system</item><item>cell</item><item>disease</item><item>duct</item><item>liver</item><item>liver cirrhosis</item><item>point</item><item>virus infection</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-13245</item><item key="id">5524</item><item key="name">Hepatic gene expression during the development of experimental biliary atresia in different mouse strains</item></item><item><item key="slug">hepatic-glucose-sensing-is-required-to-preserve-be</item><item key="factor_count">2</item><item key="sample_count">12</item><item key="tags"><item>carbohydrate</item><item>cell</item><item>glucose</item><item>insulin</item><item>liver</item><item>protein</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-43581</item><item key="id">7135</item><item key="name">Hepatic glucose sensing is required to preserve beta-cell glucose competence</item></item><item><item key="slug">hepatocyte-nuclear-factor-4a-promotes-gut-neoplasi</item><item key="factor_count">0</item><item key="sample_count">6</item><item key="tags"><item>cancer</item><item>cell</item><item>colorectal cancer</item><item>distal</item><item>epithelial cell</item><item>gut</item><item>hepatocyte</item><item>intestinal epithelium</item><item>intestine</item><item>jejunum</item><item>point</item><item>protein</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-20968</item><item key="id">6016</item><item key="name">Hepatocyte-nuclear-factor-4a promotes gut neoplasia in mice and protects against the production of reactive oxygen species</item></item><item><item key="slug">heterogeneity-of-ln-resident-macrophage</item><item key="factor_count">0</item><item key="sample_count">6</item><item key="tags"><item>cell</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-15767</item><item key="id">5680</item><item key="name">Heterogeneity of LN resident macrophage</item></item><item><item key="slug">highly-efficient-derivation-of-ventricular-cardiom</item><item key="factor_count">2</item><item key="sample_count">11</item><item key="tags"><item>cell</item><item>central</item><item>somatic cell</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-32598</item><item key="id">6653</item><item key="name">Highly efficient derivation of ventricular cardiomyocytes from induced pluripotent stem cells with a distinct epigenetic signature</item></item><item><item key="slug">high-runx1-levels-promote-a-reversible-more-differ</item><item key="factor_count">3</item><item key="sample_count">8</item><item key="tags"><item>cell</item><item>hair</item><item>hair follicle</item><item>integrin</item><item>skin</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-53077</item><item key="id">7508</item><item key="name">High Runx1 levels promote a reversible more differentiated cell-state in hair follicle stem cells during quiescence</item></item><item><item key="slug">histone-fold-domain-protein-nf-y-promotes-chromati</item><item key="factor_count">0</item><item key="sample_count">15</item><item key="tags"><item>cell</item><item>chromatin</item><item>embryonic stem cell</item><item>genome</item><item>proximal</item><item>stem cell</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-56838</item><item key="id">7620</item><item key="name">Histone-fold domain protein NF-Y promotes chromatin accessibility for cell type-specific master transcription factors [gene expression]</item></item></data></biogps>
