8QZ2
| Crystal structure of human two pore domain potassium ion channel TREK-2 (K2P10.1) in complex with an inhibitory nanobody (Nb61) | Descriptor: | Nanobody 61, POTASSIUM ION, Potassium channel subfamily K member 10 | Authors: | Baronina, A, Pike, A.C.W, Rodstrom, K.E.J, Ang, J, Bushell, S.R, Chalk, R, Mukhopadhyay, S.M.M, Pardon, E, Arrowsmith, C.H, Edwards, A.M, Bountra, C, Burgess-Brown, N.A, Tucker, S.J, Steyaert, J, Carpenter, E.P, Structural Genomics Consortium (SGC) | Deposit date: | 2023-10-26 | Release date: | 2024-05-29 | Method: | X-RAY DIFFRACTION (3.5 Å) | Cite: | Extracellular modulation of TREK-2 activity with nanobodies provides insight into the mechanisms of K2P channel regulation. Nat Commun, 15, 2024
|
|
8QZ1
| Crystal structure of human two pore domain potassium ion channel TREK-2 (K2P10.1) in complex with a nanobody (Nb58) | Descriptor: | Isoform B of Potassium channel subfamily K member 10, Nanobody 58, POTASSIUM ION | Authors: | Rodstrom, K.E.J, Pike, A.C.W, Baronina, A, Ang, J, Bushell, S.R, Chalk, R, Mukhopadhyay, S.M.M, Pardon, E, Arrowsmith, C.H, Edwards, A.M, Bountra, C, Burgess-Brown, N.A, Tucker, S.J, Steyaert, J, Carpenter, E.P, Structural Genomics Consortium (SGC) | Deposit date: | 2023-10-26 | Release date: | 2024-05-29 | Method: | X-RAY DIFFRACTION (3.588 Å) | Cite: | Extracellular modulation of TREK-2 activity with nanobodies provides insight into the mechanisms of K2P channel regulation. Nat Commun, 15, 2024
|
|
8QZ3
| Crystal structure of human two pore domain potassium ion channel TREK-2 (K2P10.1) in complex with an activatory nanobody (Nb67) | Descriptor: | (4S)-2-METHYL-2,4-PENTANEDIOL, Nanobody 67, POTASSIUM ION, ... | Authors: | Baronina, A, Pike, A.C.W, Rodstrom, K.E.J, Ang, J, Bushell, S.R, Chalk, R, Mukhopadhyay, S.M.M, Pardon, E, Arrowsmith, C.H, Edwards, A.M, Bountra, C, Burgess-Brown, N.A, Tucker, S.J, Steyaert, J, Carpenter, E.P, Structural Genomics Consortium (SGC) | Deposit date: | 2023-10-26 | Release date: | 2024-05-29 | Method: | X-RAY DIFFRACTION (2.4 Å) | Cite: | Extracellular modulation of TREK-2 activity with nanobodies provides insight into the mechanisms of K2P channel regulation. Nat Commun, 15, 2024
|
|
8QZ4
| Crystal structure of human two pore domain potassium ion channel TREK-2 (K2P10.1) in complex with an activatory nanobody (Nb76) | Descriptor: | BARIUM ION, CHOLESTEROL HEMISUCCINATE, Nanobody 76, ... | Authors: | Rodstrom, K.E.J, Pike, A.C.W, Baronina, A, Ang, J, Bushell, S.R, Chalk, R, Mukhopadhyay, S.M.M, Pardon, E, Arrowsmith, C.H, Edwards, A.M, Bountra, C, Burgess-Brown, N.A, Tucker, S.J, Steyaert, J, Carpenter, E.P, Structural Genomics Consortium (SGC) | Deposit date: | 2023-10-26 | Release date: | 2024-05-29 | Method: | X-RAY DIFFRACTION (3.2 Å) | Cite: | Extracellular modulation of TREK-2 activity with nanobodies provides insight into the mechanisms of K2P channel regulation. Nat Commun, 15, 2024
|
|
3ZRS
| X-ray crystal structure of a KirBac potassium channel highlights a mechanism of channel opening at the bundle-crossing gate. | Descriptor: | ATP-SENSITIVE INWARD RECTIFIER POTASSIUM CHANNEL 10, CHLORIDE ION, POTASSIUM ION | Authors: | Bavro, V.N, De Zorzi, R, Schmidt, M.R, Muniz, J.R.C, Zubcevic, L, Sansom, M.S.P, Venien-Bryan, C, Tucker, S.J. | Deposit date: | 2011-06-17 | Release date: | 2012-01-11 | Last modified: | 2023-12-20 | Method: | X-RAY DIFFRACTION (3.05 Å) | Cite: | Structure of a Kirbac Potassium Channel with an Open Bundle Crossing Indicates a Mechanism of Channel Gating Nat.Struct.Mol.Biol., 19, 2012
|
|
4LP8
| A Novel Open-State Crystal Structure of the Prokaryotic Inward Rectifier KirBac3.1 | Descriptor: | CHLORIDE ION, DI(HYDROXYETHYL)ETHER, Inward rectifier potassium channel Kirbac3.1, ... | Authors: | Zubcevic, L, Bavro, V.N, Muniz, J.R.C, Schmidt, M.R, Wang, S, De Zorzi, R, Venien-Bryan, C, Sansom, M.S.P, Nichols, C.G, Tucker, S.J. | Deposit date: | 2013-07-15 | Release date: | 2013-11-20 | Last modified: | 2023-09-20 | Method: | X-RAY DIFFRACTION (2.46 Å) | Cite: | Control of KirBac3.1 Potassium Channel Gating at the Interface between Cytoplasmic Domains. J.Biol.Chem., 289, 2014
|
|