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<biogps><data><item key="owner">ArrayExpress Uploader</item><item key="ownerprofile_id">arrayexpress_sid</item><item key="species">mouse</item><item key="factors"><item><item key="GSM367909 1"/></item><item><item key="GSM367910 1"/></item><item><item key="GSM367911 1"/></item><item><item key="GSM367912 1"/></item><item><item key="GSM367913 1"/></item><item><item key="GSM367914 1"/></item></item><item key="id">8237</item><item key="pop_total">0</item><item key="platform">7</item><item key="summary_wrapped">Hypoxia-driven alterations in the B16 melanoma cell transcriptome account for a higher metastatic potential: evidence for a role of Ero1L...</item><item key="geo_gse_id">E-GEOD-14727</item><item key="owner_profile">/profile/8773/arrayexpressuploader</item><item key="factor_count">0</item><item key="sample_count">6</item><item key="tags"><item>cell</item><item>melanoma</item></item><item key="lastmodified">Dec.12, 2014</item><item key="is_default">False</item><item key="geo_id_plat">E-GEOD-14727_A-AFFY-23</item><item key="slug">hypoxia-driven-alterations-in-the-b16-melanoma-cel</item><item key="geo_gds_id"/><item key="name">Hypoxia-driven alterations in the B16 melanoma cell transcriptome account for a higher metastatic potential</item><item key="created">Nov.23, 2014</item><item key="summary">Hypoxia-driven alterations in the B16 melanoma cell transcriptome account for a higher metastatic potential: evidence for a role of Ero1L  We analyzed transcriptomic adaptations to hypoxia/reoxygenation in B16 melanoma cells. By Ero1L over- and down-expression in vivo, we identified this ER oxidase as an actor of tumor growth and metastasis take. In vitro culture of B16 submitted to hypoxia (oxygen rate less than 1%)</item><item key="source">http://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-14727</item><item key="sample_source">http://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-14727/samples/</item></data></biogps>
