Matches in Nanopublications for { <http://rdf.disgenet.org/nanopublications.trig#NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_assertion> ?p ?o ?g. }
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- NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_assertion type Assertion NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_head.
- NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_assertion description "[We conclude the following: 1) physiological hyperinsulinemia induces sustained activation of insulin-signaling molecules in human skeletal muscle; 2) the more distal insulin-signaling components (Akt, GSK-3) are activated much more rapidly than the proximal signaling molecules (IRTK as well as insulin receptor substrate 1 and phosphatidylinositol 3-kinase [Wojtaszewski et al., Diabetes 46:1775-1781, 1997]); and 3) prior exercise increases insulin stimulation of both glucose uptake and glycogen synthase activity in the absence of an upregulation of signaling events in human skeletal muscle.]. Sentence from MEDLINE/PubMed, a database of the U.S. National Library of Medicine." NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_provenance.
- NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_assertion evidence source_evidence_literature NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_provenance.
- NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_assertion SIO_000772 10868952 NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_provenance.
- NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_assertion wasDerivedFrom befree-20140225 NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_provenance.
- NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_assertion wasGeneratedBy ECO_0000203 NP513058.RARvXPxyixKv2aMlrhDPkKJ3c1N6S5L3KReDu8kYZ3eDY130_provenance.