Matches in Nanopublications for { ?s ?p ?o <http://rdf.disgenet.org/nanopublications.trig#NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance>. }
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- source_evidence_literature type ECO_0000212 NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- source_evidence_literature label "DisGeNET evidence - LITERATURE" NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- source_evidence_literature comment "Gene-disease associations inferred from text-mining the literature." NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_assertion description "[In eight of these (80%) additional juxtapositioned nuclear factor 1, glial factor 1 and/or AP-1 binding motifs were created by duplications and/or insertions in region D. These findings indicate that type II TCRs are frequently present in PML and suggest to use TCR type II constructs for in vitro and in vivo studies of the evaluation of the functional role of DNA binding motifs.]. Sentence from MEDLINE/PubMed, a database of the U.S. National Library of Medicine." NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_assertion evidence source_evidence_literature NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_assertion SIO_000772 11031693 NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_assertion wasDerivedFrom befree-20140225 NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_assertion wasGeneratedBy ECO_0000203 NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.
- befree-20140225 importedOn "2014-02-25" NP862333.RAnZdcXuz6P62K32aL4EpRx4o3K4W8LX3rdkoJ8nyCQqg130_provenance.