Search results (81)
« Back to PublicationsAmino acid and viral binding by the high-affinity Cationic Amino acid Transporter 1 (CAT1) from Mus musculus.
Journal article
Ye M. et al, (2026), Nat Commun, 17
Structures of the human adult muscle-type nicotinic receptor in resting and desensitized states.
Journal article
Li A. et al, (2025), Cell Rep, 44
Structural basis of the mechanism and inhibition of a human ceramide synthase.
Journal article
Pascoa TC. et al, (2025), Nat Struct Mol Biol, 32, 431 - 440
Transport and inhibition of the sphingosine-1-phosphate exporter SPNS2.
Journal article
Li HZ. et al, (2025), Nat Commun, 16
Structures of the human adult muscle-type nicotinic receptor in resting and desensitised states
Preprint
Li A. et al, (2024)
Structural basis for inhibition of the lysosomal two-pore channel TPC2 by a small molecule antagonist.
Journal article
Chi G. et al, (2024), Structure, 32, 1137 - 1149.e4
Amino acid and viral binding by the high-affinity Cationic Amino acid Transporter 1 (CAT1) from Mus musculus
Preprint
Sauer D. et al, (2024)
Structure and function of the SIT1 proline transporter in complex with the COVID-19 receptor ACE2.
Journal article
Li HZ. et al, (2024), Nat Commun, 15
Extracellular modulation of TREK-2 activity with nanobodies provides insight into the mechanisms of K2P channel regulation.
Journal article
Rödström KEJ. et al, (2024), Nat Commun, 15
Structural basis of the mechanism and inhibition of a human ceramide synthase
Preprint
Pascoa TC. et al, (2023)
Transport and inhibition of the sphingosine-1-phosphate exporter SPNS2
Preprint
Sauer D. et al, (2023)
Extracellular modulation of TREK-2 activity with nanobodies provides insight into the mechanisms of K2P channel regulation
Preprint
Rödström KEJ. et al, (2023)
Structural characterization of human urea transporters UT-A and UT-B and their inhibition.
Journal article
Chi G. et al, (2023), Sci Adv, 9
Structure and function of the SIT1 proline transporter in complex with the COVID-19 receptor ACE2
Preprint
Li HZ. et al, (2023)
The structural basis of fatty acid elongation by the ELOVL elongases.
Journal article
Nie L. et al, (2021), Nat Struct Mol Biol, 28, 512 - 520
