<?xml version="1.0" encoding="ASCII"?>
<biogps><data><item><item key="slug">role-of-transcriptional-regulators-ifrd1-and-ifrd2</item><item key="name">Role of transcriptional regulators IFRD1 and IFRD2 in intestinal lipid absorption and obesity</item><item key="sample_count">6</item><item key="tags"><item>adipose tissue</item><item>body</item><item>fatty acid</item><item>genome</item><item>glucose</item><item>jejunum</item><item>lipid</item><item>obesity</item><item>protein</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-27019</item><item key="id">6347</item><item key="factor_count">1</item></item><item><item key="slug">saturated-fat-stimulates-obesity-and-hepatic-steat</item><item key="name">Saturated fat stimulates obesity and hepatic steatosis and affects gut microbiota composition by an enhanced overflow of dietary fat to the distal intestine</item><item key="sample_count">9</item><item key="tags"><item>axis</item><item>body</item><item>distal</item><item>fatty acid</item><item>glucose</item><item>gut</item><item>intestine</item><item>lipid</item><item>liver</item><item>metabolic syndrome</item><item>obesity</item><item>palm</item><item>proximal</item><item>small intestine</item><item>syndrome</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-18586</item><item key="id">5859</item><item key="factor_count">2</item></item><item><item key="slug">sirt4-ko-livers-microarray</item><item key="name">SIRT4 KO livers microarray</item><item key="sample_count">12</item><item key="tags"><item>fatty acid</item><item>genome</item><item>lipid</item><item>liver</item><item>peroxisome</item><item>protein</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-56321</item><item key="id">7600</item><item key="factor_count">1</item></item><item><item key="slug">specific-modulation-of-mucosal-immune-response-tol</item><item key="name">Specific modulation of mucosal immune response, tolerance and proliferation in mice colonized with A. muciniphila</item><item key="sample_count">9</item><item key="tags"><item>ascending colon</item><item>basal</item><item>cecum</item><item>cell</item><item>colon</item><item>glycoprotein</item><item>ileum</item><item>intestine</item><item>lipid</item><item>tract</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-18587</item><item key="id">5860</item><item key="factor_count">2</item></item><item><item key="slug">sphingosine-1-phosphate-phosphatase-1-regulates-ke</item><item key="name">Sphingosine-1-phosphate phosphatase 1 regulates keratinocyte differentiation and epidermal homeostasis</item><item key="sample_count">10</item><item key="tags"><item>lipid</item><item>skin</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-40368</item><item key="id">6990</item><item key="factor_count">1</item></item><item><item key="slug">the-eif2-kinase-perk-and-the-integrated-stress-res</item><item key="name">The eIF2 kinase PERK and the integrated stress response facilitate activation of ATF6 during endoplasmic reticulum stress</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="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-29929</item><item key="id">6496</item><item key="factor_count">3</item></item><item><item key="slug">hepatic-gene-expression-in-streptozotocin-induce-2</item><item key="name">Hepatic gene expression in streptozotocin-induced diabetic mice fed a phloridzin diet</item><item key="sample_count">20</item><item key="tags"><item>glucose</item><item>hyperglycemia</item><item>intestine</item><item>lipid</item><item>small intestine</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-38138</item><item key="id">6894</item><item key="factor_count">1</item></item><item><item key="slug">high-fat-diet-triggers-sirt1-cleavage-in-adipose-t</item><item key="name">High Fat Diet Triggers SIRT1 Cleavage in Adipose Tissue Providing a Link between Dietary Stress   and Metabolic Dysfunction.</item><item key="sample_count">16</item><item key="tags"><item>adipose tissue</item><item>lipid</item><item>obesity</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-30247</item><item key="id">6510</item><item key="factor_count">2</item></item><item><item key="slug">immunoprotective-properties-of-sertoli-cells-poten</item><item key="name">Immunoprotective properties of sertoli cells: potential genes and pathways that confer immune privilege for sertoli cell transplantation and in the testis</item><item key="sample_count">6</item><item key="tags"><item>cell</item><item>leukocyte</item><item>line</item><item>lipid</item><item>sertoli cell</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-23200</item><item key="id">6171</item><item key="factor_count">0</item></item><item><item key="slug">metabolic-control-of-adult-neural-stem-cell-activi</item><item key="name">Metabolic control of adult neural stem cell activity by FASN-&#173;dependent lipogenesis</item><item key="sample_count">6</item><item key="tags"><item>brain</item><item>cell</item><item>fatty acid</item><item>lipid</item><item>neural stem cell</item><item>stem cell</item></item><item key="species">mouse</item><item key="is_default">False</item><item key="geo_gse_id">E-GEOD-27391</item><item key="id">6367</item><item key="factor_count">1</item></item></data></biogps>
