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Current Opinion in Structural Biology|July 10, 2016
The intraflagellar transport machinery in ciliary signalingAndré Mourão, Søren T Christensen, Esben LorentzenCilia|August 16, 2013
Intraflagellar transport complex structure and cargo interactionsSagar Bhogaraju, Benjamin D Engel, Esben LorentzenNature Structural & Molecular Biology|December 19, 2006
A single subunit, Dis3, is essentially responsible for yeast exosome core activityAndrzej Dziembowski, Esben Lorentzen, Elena Conti, et al.Biochemistry|March 16, 2005
Mechanism of the Schiff base forming fructose-1,6-bisphosphate aldolase: structural analysis of reaction intermediatesEsben Lorentzen, Bettina Siebers, Reinhard Hensel, et al.Small Gtpases|September 25, 2015
Novel topography of the Rab11-effector interaction network within a ciliary membrane targeting complexMelanie Vetter, Jing Wang, Esben Lorentzen, et al.Essays in Biochemistry|October 6, 2018
Trafficking of ciliary membrane proteins by the intraflagellar transport/BBSome machineryJenna L Wingfield, Karl-Ferdinand Lechtreck, Esben LorentzenCell|August 23, 2006
The crystal structure of the exon junction complex reveals how it maintains a stable grip on mRNAFulvia Bono, Judith Ebert, Esben Lorentzen, et al.Current Biology : CB|October 7, 2025
Intraflagellar transport: How kinesin motors hook onto their trainsSatyam K Yadav, Rune T Kidmose, Esben LorentzenNature Structural & Molecular Biology|August 11, 2015
Structure of Rab11-FIP3-Rabin8 reveals simultaneous binding of FIP3 and Rabin8 effectors to Rab11Melanie Vetter, Ralf Stehle, Claire Basquin, et al.The EMBO Journal|November 10, 2022
Biochemically validated structural model of the 15-subunit intraflagellar transport complex IFT-BNarcis A Petriman, Marta Loureiro-López, Michael Taschner, et al.Pageof 12