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Showing all 42 items for (author: newstead & s)

EMDB-50741:
Structure of the human two pore domain potassium ion channel THIK-1 (K2P13.1) in a closed conformation
Method: single particle / : Rodstrom KEJ, Tucker SJ

PDB-9ft7:
Structure of the human two pore domain potassium ion channel THIK-1 (K2P13.1) in a closed conformation
Method: single particle / : Rodstrom KEJ, Tucker SJ

EMDB-51158:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1)
Method: single particle / : Hall PH, Rodstrom KEJ, Tucker SJ

EMDB-51159:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1) G236R mutant
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

EMDB-51160:
Structure of the human two pore domain potassium ion channel TASK-1 (K2P3.1)
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

PDB-9g9v:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1)
Method: single particle / : Hall PH, Rodstrom KEJ, Tucker SJ

PDB-9g9w:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1) G236R mutant
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

PDB-9g9x:
Structure of the human two pore domain potassium ion channel TASK-1 (K2P3.1)
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

EMDB-44599:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to cefadroxil
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

EMDB-44600:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to amoxicillin
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

EMDB-44601:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to cloxacillin, pose 1
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

EMDB-44602:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to cloxacillin, pose 2
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-9bir:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to cefadroxil
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-9bis:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to amoxicillin
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-9bit:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to cloxacillin, pose 1
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-9biu:
Cryo-EM structure of the mammalian peptide transporter PepT2 bound to cloxacillin, pose 2
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

EMDB-19066:
TREK2 in OGNG/CHS detergent micelle with biparatopic inhibitory nanobody Nb6158
Method: single particle / : Smith KHM, Tucker SJ

EMDB-17787:
4.0 angstrom map of outward-facing MFS transporter MHAS2168, a homologue of M. tuberculosis Rv1410, in complex with a megabody
Method: single particle / : Remm S, Gonda I, Seeger MA

EMDB-16269:
Cryo-EM structure of rat SLC22A6 in the apo state
Method: single particle / : Parker JL, Kato T, Newstead S

EMDB-16270:
Cryo-EM structure of rat SLC22A6 bound to tenofovir
Method: single particle / : Parker JL, Kato T, Newstead S

EMDB-16271:
Cryo-EM structure of rat SLC22A6 bound to probenecid
Method: single particle / : Parker JL, Kato T, Newstead S

EMDB-16280:
Cryo-EM structure of rat SLC22A6 bound to alpha-ketoglutaric acid
Method: single particle / : Parker JL, Kato T, Newstead S

EMDB-16977:
Cryo-EM structure of rat SLC22A6 bound to alpha-ketoglutaric acid in a low occupancy state
Method: single particle / : Parker JL, Kato T, Newstead S

PDB-8bvr:
Cryo-EM structure of rat SLC22A6 in the apo state
Method: single particle / : Parker JL, Kato T, Newstead S

PDB-8bvs:
Cryo-EM structure of rat SLC22A6 bound to tenofovir
Method: single particle / : Parker JL, Kato T, Newstead S

PDB-8bvt:
Cryo-EM structure of rat SLC22A6 bound to probenecid
Method: single particle / : Parker JL, Kato T, Newstead S

PDB-8bw7:
Cryo-EM structure of rat SLC22A6 bound to alpha-ketoglutaric acid
Method: single particle / : Parker JL, Kato T, Newstead S

PDB-8omu:
Cryo-EM structure of rat SLC22A6 bound to alpha-ketoglutaric acid in a low occupancy state
Method: single particle / : Parker JL, Kato T, Newstead S

EMDB-17462:
cryo-EM structure of human SLC15A4 in outward-open state
Method: single particle / : Parker JL, Kato T, Newstead S

PDB-8p6a:
cryo-EM structure of human SLC15A4 in outward-open state
Method: single particle / : Parker JL, Kato T, Newstead S

EMDB-13266:
Cryo EM structure of System XC- in complex with glutamate
Method: single particle / : Parker JL, Deme JC

EMDB-13267:
Cryo EM structure of System XC-
Method: single particle / : Parker JL, Deme JC

PDB-7p9u:
Cryo EM structure of System XC- in complex with glutamate
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-7p9v:
Cryo EM structure of System XC-
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

EMDB-12528:
Cryo-EM structure of the mammalian peptide transporter PepT2
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-7nqk:
Cryo-EM structure of the mammalian peptide transporter PepT2
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

EMDB-12604:
Cryo-EM structure of the mycolic acid transporter MmpL3 from M. tuberculosis
Method: single particle / : Adams O, Deme JC

PDB-7nvh:
Cryo-EM structure of the mycolic acid transporter MmpL3 from M. tuberculosis
Method: single particle / : Adams O, Deme JC, Parker JL, Lea SM, Newstead S

EMDB-12140:
Cryo-EM structure of the outward open proton coupled folate transporter at pH 7.5
Method: single particle / : Parker JL, Deme JC

EMDB-12141:
Cryo-EM structure of the proton coupled folate transporter at pH 6.0 bound to pemetrexed
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-7bc6:
Cryo-EM structure of the outward open proton coupled folate transporter at pH 7.5
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S

PDB-7bc7:
Cryo-EM structure of the proton coupled folate transporter at pH 6.0 bound to pemetrexed
Method: single particle / : Parker JL, Deme JC, Lea SM, Newstead S