<?xml version="1.0" encoding="ASCII"?>
<biogps><data><item><item key="factor_count">3</item><item key="sample_count">14</item><item key="tags"><item>endoplasmic reticulum</item><item>lipid</item><item>liver</item><item>protein</item></item><item key="slug">the-eif2-kinase-perk-and-the-integrated-stress-res</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-29929</item><item key="id">6496</item><item key="species">mouse</item><item key="name">The eIF2 kinase PERK and the integrated stress response facilitate activation of ATF6 during endoplasmic reticulum stress</item></item><item><item key="factor_count">1</item><item key="sample_count">18</item><item key="tags"><item>analgesia</item><item>congenital insensitivity to pain</item><item>dorsal</item><item>dorsal root</item><item>enkephalin</item><item>genome</item><item>neuron</item><item>peripheral</item><item>protein</item><item>sensory neuron</item><item>spinal cord</item></item><item key="slug">the-molecular-basis-of-analgesia-in-congenital-ins</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-61373</item><item key="id">7712</item><item key="species">mouse</item><item key="name">The molecular basis of analgesia in congenital insensitivity to pain associated with loss of Nav1.7 function</item></item><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="slug">hematopoietic-stem-cell-differentiation-regulated</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-19502</item><item key="id">5930</item><item key="species">mouse</item><item key="name">Hematopoietic Stem Cell Differentiation Regulated by a Single Ubiquitin Ligase: Substrate Complex</item></item><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="slug">hepatic-gene-expression-during-liver-regeneration</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-20426</item><item key="id">5987</item><item key="species">mouse</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="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="slug">hepatic-glucose-sensing-is-required-to-preserve-be</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-43581</item><item key="id">7135</item><item key="species">mouse</item><item key="name">Hepatic glucose sensing is required to preserve beta-cell glucose competence</item></item><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="slug">hepatocyte-nuclear-factor-4a-promotes-gut-neoplasi</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-20968</item><item key="id">6016</item><item key="species">mouse</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="factor_count">2</item><item key="sample_count">16</item><item key="tags"><item>brain</item><item>clathrin</item><item>genome</item><item>hippocampus</item><item>phosphatidylinositol</item><item>protein</item></item><item key="slug">hippocampal-gene-expression-in-young-and-adult-mic</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-49699</item><item key="id">7400</item><item key="species">mouse</item><item key="name">Hippocampal Gene Expression in Young and Adult Mice with Memory Deficits</item></item><item><item key="factor_count">1</item><item key="sample_count">6</item><item key="tags"><item>body</item><item>brain</item><item>central</item><item>class</item><item>disease</item><item>genome</item><item>hippocampus</item><item>neuron</item><item>point</item><item>protein</item></item><item key="slug">hippocampal-gene-expression-profiling-of-a-model-o</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-46871</item><item key="id">7291</item><item key="species">mouse</item><item key="name">Hippocampal gene expression profiling of a model of Alzheimer`s Disease upon treatment with the ACE inhibitor captopril</item></item><item><item key="factor_count">4</item><item key="sample_count">26</item><item key="tags"><item>axis</item><item>brain</item><item>macrophage</item><item>measles</item><item>protein</item><item>viral infection</item></item><item key="slug">hsp70-and-a-novel-axis-of-type-1-interferon-depend</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-42264</item><item key="id">7081</item><item key="species">mouse</item><item key="name">Hsp70 and a Novel Axis of Type 1 Interferon-Dependent Antiviral Immunity in the Measles Virus-Infected Brain</item></item><item><item key="factor_count">1</item><item key="sample_count">6</item><item key="tags"><item>anterior</item><item>cochlea</item><item>ear</item><item>genome</item><item>hair</item><item>lateral</item><item>protein</item><item>vestibule</item></item><item key="slug">identification-of-microrna-targets-in-the-mammalia</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-23081</item><item key="id">6161</item><item key="species">mouse</item><item key="name">Identification of microRNA targets in the mammalian inner ear using a comprehensive transcriptome and proteome integrated approach</item></item></data></biogps>
