http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#Head
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw
http://www.nanopub.org/nschema#hasAssertion
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#assertion
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw
http://www.nanopub.org/nschema#hasProvenance
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#provenance
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw
http://www.nanopub.org/nschema#hasPublicationInfo
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#pubinfo
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw
http://www.w3.org/1999/02/22-rdf-syntax-ns#type
http://www.nanopub.org/nschema#Nanopublication
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#assertion
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_1
http://purl.obolibrary.org/obo/RO_0002204
http://rgd.mcw.edu/rgdweb/report/gene/main.html?id=2635
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_1
http://www.w3.org/1999/02/22-rdf-syntax-ns#type
http://www.ebi.ac.uk/chebi/searchId.do?chebiId=CHEBI_33697
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_2
http://purl.obolibrary.org/obo/BFO_0000066
http://purl.obolibrary.org/obo/CL_0002368
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_2
http://purl.obolibrary.org/obo/BFO_0000066
http://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=10116
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_2
http://www.w3.org/1999/02/22-rdf-syntax-ns#object
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_1
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_2
http://www.w3.org/1999/02/22-rdf-syntax-ns#predicate
http://www.selventa.com/vocabulary/increases
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_2
http://www.w3.org/1999/02/22-rdf-syntax-ns#subject
http://amigo.geneontology.org/amigo/term/GO:0006979
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_2
http://www.w3.org/1999/02/22-rdf-syntax-ns#type
http://www.w3.org/1999/02/22-rdf-syntax-ns#Statement
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#assertion
http://www.w3.org/2000/01/rdf-schema#label
bp(GOBP:"response to oxidative stress") -> r(RGD:Fth1)
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#provenance
http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel
http://purl.org/dc/elements/1.1/description
Approximately 61,000 statements.
http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel
http://purl.org/dc/elements/1.1/rights
Copyright (c) 2011-2012, Selventa. All rights reserved.
http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel
http://purl.org/dc/elements/1.1/title
BEL Framework Large Corpus Document
http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel
http://purl.org/pav/authoredBy
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_4
http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel
http://purl.org/pav/version
20131211
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_3
http://www.w3.org/ns/prov#value
Theoretically, under hypoxic conditions, the Fe(II) state is favored in preference to Fe(III), which could result in the release of iron from ferritin or other compartments. The increased amount of Fe(II) could result in two effects: (1) It may be incorporated into the [4Fe-4S] cluster of IRP-1 and decrease RNA-binding activity, and (2) it could result in increased IRP-2 degradation. It is notable that oxidant stress has been shown to have both transcriptional and post-transcriptional effects on ferritin expression.2 Indeed, oxidant stress can directly increase the transcription of the ferritin gene.14 For example, this occurs after exposure to agents which decrease glutathione levels that acts as a defense against free radicals.15 Further, oxidant stress can inactivate IRP-1 by oxidizing critical sulfydryl groups of cysteine residues that are important for mRNA binding.
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_3
http://www.w3.org/ns/prov#wasQuotedFrom
http://www.ncbi.nlm.nih.gov/pubmed/12761471
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_4
http://www.w3.org/2000/01/rdf-schema#label
Selventa
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#assertion
http://www.w3.org/ns/prov#hadPrimarySource
http://www.ncbi.nlm.nih.gov/pubmed/12761471
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#assertion
http://www.w3.org/ns/prov#wasDerivedFrom
http://resource.belframework.org/belframework/20131211/knowledge/large_corpus.bel
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#assertion
http://www.w3.org/ns/prov#wasDerivedFrom
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#_3
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw#pubinfo
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw
http://purl.org/dc/terms/created
2014-07-03T14:32:02.315+02:00
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw
http://purl.org/pav/createdBy
http://orcid.org/0000-0001-6818-334X
http://www.tkuhn.ch/bel2nanopub/RAyXYQnqvOyGHaGVoVcPFChf6Xha0Q-IJtYuD2w_1U5sw
http://purl.org/pav/createdBy
http://orcid.org/0000-0002-1267-0234