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Details on Person Evidence for high-capacity bidirectional glucose transport across the endoplasmic reticulum membrane by genetically encoded fluoresence resonance energy transfer nanosensors

Class:IdLiteratureReference:198494
_displayNameEvidence for high-capacity bidirectional glucose transport across the endoplasmic reticulum membrane by genetically encoded fluoresence resonance energy transfer nanosensors
_timestamp2016-12-27 23:37:32
author[Person:198517] Fehr, M
[Person:198442] Takanaga, H
[Person:198459] Ehrhardt, DW
[Person:5318454] Frommer, Wolf B
created[InstanceEdit:198480] D'Eustachio, P, 2007-06-22 14:17:01
journalMol Cell Biol
modified[InstanceEdit:8953782] D'Eustachio, Peter, 2016-12-27
pages11102-11112
pubMedIdentifier16314530
titleEvidence for high-capacity bidirectional glucose transport across the endoplasmic reticulum membrane by genetically encoded fluoresence resonance energy transfer nanosensors
volume25
year2005
(literatureReference)[BlackBoxEvent:198458] Efflux of Glc from the endoplasmic reticulum [Homo sapiens]
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No pathways have been reviewed or authored by Evidence for high-capacity bidirectional glucose transport across the endoplasmic reticulum membrane by genetically encoded fluoresence resonance energy transfer nanosensors (198494)