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Biochemistry|October 11, 2024
Effect of Pathogenic Mutations on the Formation of High-Order Dynamin 2 Assemblies in Living CellsPer Niklas Hedde, Songning Zhu, Barbara Barylko, et al.Biochemistry|June 1, 2005
Mutational analysis of C-lobe ligands of human serum transferrin: insights into the mechanism of iron releaseAnne B Mason, Peter J Halbrooks, Nicholas G James, et al.Molecules (Basel, Switzerland)|June 4, 2020
Fluctuation Imaging of LRRK2 Reveals that the G2019S Mutation Alters Spatial and Membrane DynamicsBethany J Sanstrum, Brandee M S S Goo, Diana Z Y Holden, et al.The EMBO Journal|May 14, 2021
ArfGAP1 inhibits mTORC1 lysosomal localization and activationDelong Meng, Qianmei Yang, Chase H Melick, et al.Frontiers in Cellular Neuroscience|November 8, 2021
Gain-of-Function Properties of a Dynamin 2 Mutant Implicated in Charcot-Marie-Tooth DiseaseTara C Tassin, Barbara Barylko, Per Niklas Hedde, et al.Biochimica Et Biophysica Acta|September 11, 2013
A mutation associated with centronuclear myopathy enhances the size and stability of dynamin 2 complexes in cellsNicholas G James, Michelle A Digman, Justin A Ross, et al.Plos Genetics|October 21, 2021
AKAP13 couples GPCR signaling to mTORC1 inhibitionShihai Zhang, Huanyu Wang, Chase H Melick, et al.The Biochemical Journal|May 22, 2007
A novel murine protein with no effect on iron homoeostasis is homologous with transferrin and is the putative inhibitor of carbonic anhydraseFudi Wang, Adam P Lothrop, Nicholas G James, et al.Biochemistry|August 21, 2008
Evolution reversed: the ability to bind iron restored to the N-lobe of the murine inhibitor of carbonic anhydrase by strategic mutagenesisAnne B Mason, Gregory L Judson, Maria Cristina Bravo, et al.Biochemistry|February 18, 2009
Structural and functional consequences of the substitution of glycine 65 with arginine in the N-lobe of human transferrinAnne B Mason, Peter J Halbrooks, Nicholas G James, et al.Pageof 4