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<biogps><data><item key="owner">ArrayExpress Uploader</item><item key="pop_total">0</item><item key="species">mouse</item><item key="factors"><item><item key="GSM1326660"><item key="genotype">wild type genotype</item></item></item><item><item key="GSM1326660"><item key="genotype">wild type genotype</item></item></item><item><item key="GSM1326660"><item key="genotype">wild type genotype</item></item></item><item><item key="GSM1326663"><item key="genotype">Setd2 knock out</item></item></item><item><item key="GSM1326663"><item key="genotype">Setd2 knock out</item></item></item><item><item key="GSM1326663"><item key="genotype">Setd2 knock out</item></item></item></item><item key="id">7566</item><item key="ownerprofile_id">arrayexpress_sid</item><item key="platform">6</item><item key="summary_wrapped">SETD2/HYPB has been known as a histone H3K36 specific methyltransferase. However, its roles in physiology such as development and...</item><item key="pubmed_id">25242323</item><item key="geo_gse_id">E-GEOD-54931</item><item key="owner_profile">/profile/8773/arrayexpressuploader</item><item key="factor_count">1</item><item key="sample_count">6</item><item key="tags"><item>endoderm</item><item>genome</item><item>histone</item><item>primitive endoderm</item></item><item key="lastmodified">Dec.12, 2014</item><item key="is_default">False</item><item key="geo_id_plat">E-GEOD-54931_A-AFFY-45</item><item key="slug">comparison-of-gene-expression-pattern-between-wild</item><item key="geo_gds_id"/><item key="name">Comparison of gene expression pattern between Wild-type and Setd2 knockout mESCs [Affymetrix]</item><item key="created">Nov.12, 2014</item><item key="summary">SETD2/HYPB has been known as a histone H3K36 specific methyltransferase. However, its roles in physiology such as development and cellular function remain unclear. In this study, using mESCs as cellular model, we show that Setd2 mainly regulates differentiation of murine embryonic stem cells (mESCs) towards primitive endoderm. This study aimed at exploring how did Setd2 regulate primitive endoderm. differentiation. We used microarrays to detail the global programme of gene expression controled by setd2, which is required for endoderm differentiation. Wild type and Setd2 knockout mESCs were selected for RNA extraction and hybridization on Affymetrix GeneChip&#174; mouse genome 430 2.0 arrays. We sought to obtain some deregulated genes, which were required for primitive endoderm differentiation. For comparison, three biological repeats of each were performed.</item><item key="source">http://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-54931</item><item key="sample_source">http://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-54931/samples/</item></data></biogps>
