- Coordinates
- PDB Format
- Method
- ELECTRON MICROSCOPY
- Oligo State
- homo-tetramer
- Ligands
- 4 x PTY: PHOSPHATIDYLETHANOLAMINE(Non-covalent)
- 3 x K: POTASSIUM ION(Non-covalent)
K.2: 8 residues within 4Å:- Chain A: G.255, Y.256
- Chain B: G.255, Y.256
- Chain C: G.255, Y.256
- Chain D: G.255, Y.256
4 PLIP interactions:1 interactions with chain A, 1 interactions with chain D, 1 interactions with chain B, 1 interactions with chain C- Metal complexes: A:G.255, D:G.255, B:G.255, C:G.255
K.3: 9 residues within 4Å:- Chain A: T.253, V.254
- Chain B: T.253, V.254
- Chain C: T.253, V.254
- Chain D: T.253, V.254
- Ligands: K.4
5 PLIP interactions:2 interactions with chain A, 1 interactions with chain D, 1 interactions with chain B, 1 interactions with chain C- Metal complexes: A:T.253, A:V.254, D:V.254, B:V.254, C:V.254
K.4: 5 residues within 4Å:- Chain A: T.253
- Chain B: T.253
- Chain C: T.253
- Chain D: T.253
- Ligands: K.3
5 PLIP interactions:2 interactions with chain A, 1 interactions with chain B, 1 interactions with chain C, 1 interactions with chain D- Metal complexes: A:T.253, A:T.253, B:T.253, C:T.253, D:T.253
- Links
- RCSB PDBe PDBe-KB PDBj PDBsum CATH PLIP
- Citation
- Lu, Y. et al., Structural basis for the activity regulation of a potassium channel AKT1 from Arabidopsis. Nat Commun (2022)
- Release Date
- 2022-11-09
- Peptides
- Potassium channel AKT1: ABCD
- SMTL:PDB
- SMTL Chain Id:
PDB Chain Id:A
AB
BC
CD
D - Membrane
-
We predict this structure to be a membrane protein.
- Coordinates
- PDB Format
- Method
- ELECTRON MICROSCOPY
- Oligo State
- homo-tetramer
- Ligands
- 4 x PTY: PHOSPHATIDYLETHANOLAMINE(Non-covalent)
- 3 x K: POTASSIUM ION(Non-covalent)
- Links
- RCSB PDBe PDBe-KB PDBj PDBsum CATH PLIP
- Citation
- Lu, Y. et al., Structural basis for the activity regulation of a potassium channel AKT1 from Arabidopsis. Nat Commun (2022)
- Release Date
- 2022-11-09
- Peptides
- Potassium channel AKT1: ABCD
- SMTL:PDB
- SMTL Chain Id:
PDB Chain Id:A
AB
BC
CD
D - Membrane
-
We predict this structure to be a membrane protein.