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Nature Communications|June 26, 2021
Structure and transport mechanism of P5B-ATPasesPing Li, Kaituo Wang, Nina Salustros, et al.Biophysical Journal|December 8, 2016
Membrane Anchoring and Ion-Entry Dynamics in P-type ATPase Copper TransportChristina Grønberg, Oleg Sitsel, Erik Lindahl, et al.Biochemistry|July 2, 2015
Structure and Function of Cu(I)- and Zn(II)-ATPasesOleg Sitsel, Christina Grønberg, Henriette Elisabeth Autzen, et al.Antibodies (Basel, Switzerland)|September 24, 2019
Isolation and Characterization of Nanobodies against a Zinc-Transporting P-Type ATPaseElena Longhin, Christina Grønberg, Qiaoxia Hu, et al.Nature Communications|August 31, 2022
Structural basis of ion uptake in copper-transporting P1B-type ATPasesNina Salustros, Christina Grønberg, Nisansala S Abeyrathna, et al.Nature|September 4, 2024
The hepatitis C virus envelope protein complex is a dimer of heterodimersElias Honerød Augestad, Christina Holmboe Olesen, Christina Grønberg, et al.Nature Communications|March 28, 2024
Diverse roles of the metal binding domains and transport mechanism of copper transporting P-type ATPasesZongxin Guo, Fredrik Orädd, Viktoria Bågenholm, et al.Science Advances|July 20, 2022
The two-domain elevator-type mechanism of zinc-transporting ZIP proteinsAnders Wiuf, Jonas Hyld Steffen, Eva Ramos Becares, et al.Plos One|November 14, 2014
A high-yield co-expression system for the purification of an intact Drs2p-Cdc50p lipid flippase complex, critically dependent on and stabilized by phosphatidylinositol-4-phosphateHassina Azouaoui, Cédric Montigny, Miriam-Rose Ash, et al.The FEBS Journal|November 28, 2024
Transition metal transporting P-type ATPases: terminal metal-binding domains serve as sensors for autoinhibitory tailsQiaoxia Hu, Oleg Sitsel, Viktoria Bågenholm, et al.Pageof 2