User contributions
From WikiPathways
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- 13:55, 20 December 2019 Homo sapiens:Ketogenesis and ketolysis (Ontology Term : 'ketone bodies degradation pathway' added !)
- 13:54, 20 December 2019 Homo sapiens:Ketogenesis and ketolysis (Ontology Term : 'ketone bodies metabolic pathway' added !)
- 13:54, 20 December 2019 Homo sapiens:Ketogenesis and ketolysis (Modified description)
- 13:49, 20 December 2019 Homo sapiens:Ketogenesis and ketolysis (Updated right side of PW.)
- 13:25, 20 December 2019 Homo sapiens:Ketogenesis and ketolysis (Updated middle part)
- 13:03, 20 December 2019 Homo sapiens:Ketogenesis and ketolysis (Started updating lefthand side of PW)
- 12:16, 20 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Test)
- 13:05, 19 December 2019 WikiPathways (Updated december link for new PWs.)
- 12:52, 19 December 2019 Authors
- 12:40, 19 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Modified description)
- 12:38, 19 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Added lit. refs for specific interactions (provided by W. Theeuwes).)
- 16:00, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Textual update in legend.)
- 15:54, 18 December 2019 Authors (Added intro text)
- 14:26, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Added legend to describe interactions.)
- 14:18, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Modified description)
- 14:16, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Modified description)
- 14:14, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Ontology Term : 'peroxisome proliferator-activated receptor signaling pathway' added !)
- 14:12, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Ontology Term : 'skeletal muscle fiber' added !)
- 14:12, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Modified description)
- 14:10, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Modified description)
- 13:58, 18 December 2019 Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (Updated layout)
- 13:49, 18 December 2019 N Mus musculus:Regulation of Pgc1a expression by a Gsk3b-Tfeb signaling axis in skeletal muscle (New pathway)
- 14:27, 16 December 2019 Homo sapiens:Urea cycle and related diseases (Changed ornithine+citruline arrows to translocationMIM.)
- 13:40, 13 December 2019 Tools using WikiPathways (Added ComPath)
- 13:29, 27 November 2019 Homo sapiens:Fatty acid beta-oxidation (Changed textlabels to Metabolites; converted MIM-stimulation to Catalysis for enzyme linked to M1->M2 conversion.)
- 14:45, 21 November 2019 Semantic Web/News
- 21:24, 18 November 2019 WikiPathways SPARQL queries (Added explanation on new query)
- 21:21, 18 November 2019 WikiPathways SPARQL queries (→Count how many genes from a list occur in one or more pathways)
- 21:20, 18 November 2019 WikiPathways SPARQL queries (→Count how many genes from a list occur in one or more pathways)
- 21:20, 18 November 2019 WikiPathways SPARQL queries (Added query for new example)
- 21:19, 18 November 2019 WikiPathways SPARQL queries (Added new example)
- 16:29, 6 November 2019 Homo sapiens:Pluripotent stem cell differentiation pathway (Modified description)
- 16:25, 6 November 2019 Homo sapiens:Pluripotent stem cell differentiation pathway (Modified description)
- 11:16, 6 November 2019 Homo sapiens:Pluripotent stem cell differentiation pathway (Chnaged 13-cis-retinol (Vit A) to all-trans-retinol (Vit. A) for linkouts.)
- 11:11, 6 November 2019 Homo sapiens:Pluripotent stem cell differentiation pathway (Updated Vit. A ID again)
- 10:42, 6 November 2019 Homo sapiens:Pluripotent stem cell differentiation pathway (Updated Vitamin A ID)
- 16:15, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Ontology Term : 'phosphatidylcholine metabolic pathway' added !)
- 16:14, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Ontology Term : 'phosphoinositide metabolic pathway' added !)
- 16:12, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Ontology Term : 'PW:0001156' removed !)
- 16:11, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Updated all curved lines for side metabolites to MIMconversion pointing to/away from anchor.)
- 15:48, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Updated IDs for EC 2.7.1.153 (bottom right corner).)
- 09:55, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Updated top half of PW, so side metabolites are connected to anchors.)
- 09:49, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Added separate IDs for proteins under EC 2.3.1.15 .)
- 09:31, 1 November 2019 Homo sapiens:Glycerophospholipid biosynthetic pathway (Changed 2- to "1-" in 1-acyl-sn-glycero-3-phosphate (Lysophosphatidic acid; LPA) (reaction otherwise doesn't occure in humans.)
- 08:26, 1 November 2019 Lipids/Intro
- 16:42, 31 October 2019 Vitis vinifera:Monoterpene biosynthesis pathway in mint (Modified description)
- 16:39, 31 October 2019 Vitis vinifera:Monoterpene biosynthesis pathway in mint (Added general lit. ref for PW.)
- 16:38, 31 October 2019 Vitis vinifera:Monoterpene biosynthesis pathway in mint (Connected all unconnected lines (added anchors to the conversion arrows).)
- 16:34, 31 October 2019 Homo sapiens:Interferon-mediated signaling (Modified description)
- 16:33, 31 October 2019 Homo sapiens:Interferon-mediated signaling (Added lit. refs for type I, II and III (on the groups).)
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