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Details on Person Jassal, Bijay, 2014-07-28
| Class:Id | InstanceEdit:5615664 |
| _displayName | Jassal, Bijay, 2014-07-28 |
| _timestamp | 2014-07-28 12:08:54 |
| author | [Person:73447] Jassal, Bijay |
| dateTime | 2014-07-28 16:07:38 |
| (created) | [Person:5615653] Mushegian, Arcady [Person:5615654] Niederreither, Karen [Summation:5615655] The cytosolic aldo-keto reductase 1C3 (AKR1C3) can reduce al... [Person:5615656] Kedishvili, N [CatalystActivity:5615657] all-trans-retinol dehydrogenase (NADP+) activity of AKR1C3 [cytosol] [Person:5615658] Sandell, Lisa L [Person:5615659] Johnson, Teri [LiteratureReference:5615660] Retinoic acid synthesis and signaling during early organogenesis [DefinedSet:5615661] RDH10,16,DHRS9,RDHE2 [endoplasmic reticulum membrane] [Homo sapiens] [Person:5615662] Sanderson, Brian W |
| (modified) | [Pathway:162582] Signal Transduction [Homo sapiens] [Pathway:975634] Retinoid metabolism and transport [Homo sapiens] [PathwayDiagram:2468358] Diagram of Visual phototransduction, Defective SLC24A1 causes congenital stationary night blindness 1D (CSNB1D), Biosynthesis of A2E, implicated in retinal degradation, Defective visual phototransduction due to ABCA4 loss of function, Defective visual phototransduction due to LRAT loss of function, Defective visual phototransduction due to OPN1LW loss of function, Defective visual phototransduction due to OPN1MW loss of function, Defective visual phototransduction due to OPN1SW loss of function, Defective visual phototransduction due to RDH12 loss of function, Defective visual phototransduction due to RDH5 loss of function, and Defective visual phototransduction due to STRA6 loss of function [Summation:5334790] In the nucleus, cellular retinoic acid binding protein 2 (CR... [Reaction:5334854] RAR:RXR binds SUMO-CRABP2:atRA [Homo sapiens] [Pathway:5362517] Signaling by Retinoic Acid [Homo sapiens] [Reaction:5362518] RDH10,16,DHRS9,RDHE2 oxidise atROL to atRAL [Homo sapiens] [Reaction:5362522] ALDHs oxidise atRAL to atRA [Homo sapiens] [Summation:5362523] All-trans-retinoic acid (atRA) is a biologically activated ... [Reaction:5362525] CYP26A1,B1,C1 4-hydroxylate atRA [Homo sapiens] |
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No pathways have been reviewed or authored by Jassal, Bijay, 2014-07-28 (5615664)