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Advances in Biological Regulation|January 19, 2016
An amyotrophic lateral sclerosis-linked mutation in GLE1 alters the cellular pool of human Gle1 functional isoformsAditi, Laura Glass, T Renee Dawson, et al.Genetics|June 17, 2014
Nucleoporin FG domains facilitate mRNP remodeling at the cytoplasmic face of the nuclear pore complexRebecca L Adams, Laura J Terry, Susan R WenteDevelopmental Cell|July 5, 2005
Inositol polyphosphates regulate zebrafish left-right asymmetryBhaskarjyoti Sarmah, Andrew J Latimer, Bruce Appel, et al.The Journal of Biological Chemistry|April 8, 2010
Control of mRNA export and translation termination by inositol hexakisphosphate requires specific interaction with Gle1Abel R Alcázar-Román, Timothy A Bolger, Susan R WenteAdvances in Biological Regulation|October 6, 2023
Phosphorylation impacts GLE1 nuclear localization and association with DDX1Manisha Sharma, Aaron C Mason, T Renee Dawson, et al.Molecular Cell|December 18, 2007
The DEAD-box protein Dbp5 controls mRNA export by triggering specific RNA:protein remodeling eventsElizabeth J Tran, Yingna Zhou, Anita H Corbett, et al.Journal of Cell Science|July 22, 2010
Facilitated transport and diffusion take distinct spatial routes through the nuclear pore complexJindriska Fiserova, Shane A Richards, Susan R Wente, et al.Cell|August 30, 2008
The mRNA export factor Gle1 and inositol hexakisphosphate regulate distinct stages of translationTimothy A Bolger, Andrew W Folkmann, Elizabeth J Tran, et al.Nucleus (Austin, Tex.)|November 9, 2011
Dbp5, Gle1-IP6 and Nup159: a working model for mRNP exportAndrew W Folkmann, Kristen N Noble, Charles N Cole, et al.The Journal of Cell Biology|March 11, 2009
ER membrane-bending proteins are necessary for de novo nuclear pore formationT Renee Dawson, Michelle D Lazarus, Martin W Hetzer, et al.Pageof 8