Matches in Nanopublications for { ?s ?p ?o <http://rdf.disgenet.org/resource/nanopub/NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance>. }
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- source_evidence_literature type ECO_0000212 NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- source_evidence_literature label "DisGeNET evidence - LITERATURE" NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- source_evidence_literature comment "Gene-disease associations inferred from text-mining the literature." NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_assertion description "[In silico splicing factor binding analysis predicted SRSF1 to bind predominantly to the cancer associated exon 4B, hence, it was hypothesized that SRPK1 activates SRSF1 through phosphorylation, followed by SRSF1 binding to exon 4B and regulation of SLC39A14 splicing.]. Sentence from MEDLINE/PubMed, a database of the U.S. National Library of Medicine." NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_assertion evidence source_evidence_literature NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_assertion SIO_000772 20938052 NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_assertion wasDerivedFrom befree-20150227 NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_assertion wasGeneratedBy ECO_0000203 NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.
- befree-20150227 importedOn "2015-02-27" NP691321.RAcGpP-PfdvRrNO1osXwAj530C4tTjFuu5tIlQIRhQ4JM130_provenance.