PMC:1359074 / 27921-28177
Annnotations
pmc-enju-pas
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bionlp-st-ge-2016-test-proteins
{"project":"bionlp-st-ge-2016-test-proteins","denotations":[{"id":"T11493","span":{"begin":47,"end":51},"obj":"Protein"}],"namespaces":[{"prefix":"_base","uri":"http://bionlp.dbcls.jp/ontology/ge.owl#"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
bionlp-st-ge-2016-uniprot
{"project":"bionlp-st-ge-2016-uniprot","denotations":[{"id":"T13265","span":{"begin":47,"end":51},"obj":"http://www.uniprot.org/uniprot/P35712"}],"namespaces":[{"prefix":"_base","uri":"http://www.uniprot.org/uniprot/"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
GO-BP
{"project":"GO-BP","denotations":[{"id":"T11240","span":{"begin":69,"end":84},"obj":"http://purl.obolibrary.org/obo/GO_0010467"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
GO-CC
{"project":"GO-CC","denotations":[{"id":"T11591","span":{"begin":164,"end":173},"obj":"http://purl.obolibrary.org/obo/GO_0000785"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
sentences
{"project":"sentences","denotations":[{"id":"T11166","span":{"begin":0,"end":256},"obj":"Sentence"},{"id":"T215","span":{"begin":0,"end":256},"obj":"Sentence"}],"namespaces":[{"prefix":"_base","uri":"http://pubannotation.org/ontology/tao.owl#"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
simple1
{"project":"simple1","denotations":[{"id":"T11757","span":{"begin":47,"end":51},"obj":"Protein"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
BioNLP16_DUT
{"project":"BioNLP16_DUT","denotations":[{"id":"T15728","span":{"begin":47,"end":51},"obj":"Protein"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
BioNLP16_Messiy
{"project":"BioNLP16_Messiy","denotations":[{"id":"T13318","span":{"begin":47,"end":51},"obj":"Protein"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
DLUT931
{"project":"DLUT931","denotations":[{"id":"T13564","span":{"begin":47,"end":51},"obj":"Protein"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
bionlp-st-ge-2016-test-ihmc
{"project":"bionlp-st-ge-2016-test-ihmc","denotations":[{"id":"T15693","span":{"begin":206,"end":255},"obj":"Binding"},{"id":"T15578","span":{"begin":164,"end":173},"obj":"Entity"},{"id":"T15574","span":{"begin":47,"end":84},"obj":"Protein"},{"id":"T15549","span":{"begin":217,"end":255},"obj":"Entity"},{"id":"T15491","span":{"begin":138,"end":145},"obj":"Entity"},{"id":"T15453","span":{"begin":217,"end":255},"obj":"Protein"},{"id":"T15440","span":{"begin":47,"end":51},"obj":"Protein"},{"id":"T15671","span":{"begin":195,"end":198},"obj":"Entity"}],"relations":[{"id":"R10973","pred":"themeOf","subj":"T15549","obj":"T15693"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
bionlp-st-ge-2016-spacy-parsed
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bionlp-st-ge-2016-test-tees
{"project":"bionlp-st-ge-2016-test-tees","denotations":[{"id":"T13443","span":{"begin":47,"end":60},"obj":"Protein"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
testone
{"project":"testone","denotations":[{"id":"T10810","span":{"begin":47,"end":51},"obj":"Protein"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}
test3
{"project":"test3","denotations":[{"id":"T11064","span":{"begin":132,"end":137},"obj":"Binding"},{"id":"T11063","span":{"begin":47,"end":51},"obj":"Protein"},{"id":"T10955","span":{"begin":47,"end":51},"obj":"Protein"}],"relations":[{"id":"R7509","pred":"themeOf","subj":"T11063","obj":"T11064"}],"text":"Therefore, one attractive model to explain how Sox6 proteins control gene expression is that they function as architectural factors bound to DNA, influencing local chromatin structure by bending DNA and by assembling multiprotein transcriptional complexes."}