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Showing 1 - 50 of 67 items for (author: mace & k)

EMDB-72036:
Cryo-EM structure of the isethionate TRAP transporter IseQM from Oleidesulfovibrio alaskensis with bound isethionate
Method: single particle / : Newton-Vesty MC, Davies JS, Dobson RCJ

PDB-9pym:
Cryo-EM structure of the isethionate TRAP transporter IseQM from Oleidesulfovibrio alaskensis with bound isethionate
Method: single particle / : Newton-Vesty MC, Davies JS, Dobson RCJ

EMDB-44638:
Structure of the human DDD-Ube2e2 complex
Method: single particle / : Loughran T, Turk LS, Brown SHJ, Mace PD

PDB-9bjz:
Structure of the human DDD-Ube2e2 complex
Method: single particle / : Loughran T, Turk LS, Brown SHJ, Mace PD

EMDB-42489:
Bacillus niacini flavin monooxygenase
Method: single particle / : Richardson BC, French JB

EMDB-42490:
Bacillus niacini flavin monooxygenase with bound (2,6)DHP
Method: single particle / : Richardson BC, French JB

PDB-8urc:
Bacillus niacini flavin monooxygenase
Method: single particle / : Richardson BC, French JB

PDB-8urd:
Bacillus niacini flavin monooxygenase with bound (2,6)DHP
Method: single particle / : Richardson BC, French JB

EMDB-19478:
O-Layer C14 at 2.46A - Local refinement with C14 symmetry of the O-layer of the outer membrane core complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Waksman G

EMDB-19479:
I-Layer C16 at 2.69A - Local refinement with C16 symmetry of the I-layer of the outer membrane core complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Waksman G

EMDB-19480:
Conformation-A OMCC at 3.18A - Refinement without symmetry of the outer membrane core complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Waksman G

EMDB-19481:
Conformation-B of the full-length outer membrane core complex (TrwH/VirB7, TrwF/VirB9, TrwE/VirB10CTD) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

EMDB-19482:
Conformation-C OMCC at 3.05A - Refinement without symmetry of the outer membrane core complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Waksman G

EMDB-19483:
Stalk C5 at 2.97A - Local refinement with C5 symmetry of the Stalk complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Waksman G

EMDB-19484:
Arches-protomer at 6.22A - Refinement without symmetry of the Arches-protomer complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Waksman G

EMDB-19485:
Extended inner membrne complex (IMC) protomer at 3.83A - Refinement without symmetry of the extended IMC-protomer complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Waksman G

EMDB-19488:
Stalk-Arches-IMC at 4.33A - Refinement without symmetry of the Stalk-Arches-IMC from the fully-assembled R388 type IV secretion.
Method: single particle / : Mace K, Waksman G

PDB-8rt4:
O-layer structure (TrwH/VirB7, TrwF/VirB9CTD, TrwE/VirB10CTD) of the outer membrane core complex from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rt5:
I-layer structure (TrwF/VirB9CTD, TrwE/VirB10CTD) of the outer membrane core complex from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rt6:
Conformation-A of the full-length outer membrane core complex (TrwH/VirB7, TrwF/VirB9, TrwE/VirB10CTD) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rt7:
Conformation-B of the full-length outer membrane core complex (TrwH/VirB7, TrwF/VirB9, TrwE/VirB10CTD) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rt8:
Conformation-C of the full-length outer membrane core complex (TrwH/VirB7, TrwF/VirB9, TrwE/VirB10CTD) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rt9:
Stalk complex full-length structure (TrwJ/VirB5-TrwI/VirB6) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rta:
Arches-protomer complex full-length structure (TrwJ/VirB8) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rtb:
Extended inner membrane complex (IMC) protomer structure (TrwM/VirB3-TrwK/VirB4-TrwI/VirB6-TrwG/VirB8-TrwE/VirB10) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

PDB-8rtd:
Stalk-Arches-IMC structure from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Waksman G

EMDB-41265:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Haemophilus influenzae (parallel dimer)
Method: single particle / : Davies JS, Currie MC, Dobson RCJ, North RA

EMDB-41266:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Haemophilus influenzae (antiparallel dimer)
Method: single particle / : Davies JS, Currie MC, Dobson RCJ, North RA

PDB-8thi:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Haemophilus influenzae (parallel dimer)
Method: single particle / : Davies JS, Currie MC, Dobson RCJ, North RA

PDB-8thj:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Haemophilus influenzae (antiparallel dimer)
Method: single particle / : Davies JS, Currie MC, Dobson RCJ, North RA

EMDB-15775:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Photobacterium profundum in a nanodisc
Method: single particle / : Davies JS, North RA, Dobson RCJ

PDB-8b01:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Photobacterium profundum in a nanodisc
Method: single particle / : Davies JS, North RA, Dobson RCJ

EMDB-13968:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Photobacterium profundum in amphipol
Method: single particle / : North RA, Davies JS, Morado D, Dobson RCJ

PDB-7qha:
Cryo-EM structure of the Tripartite ATP-independent Periplasmic (TRAP) transporter SiaQM from Photobacterium profundum in amphipol
Method: single particle / : North RA, Davies JS, Morado D, Dobson RCJ

EMDB-12707:
O-Layer C14 at 2.58A - Local refinement with C14 symmetry of the O-layer of the outer membrane core complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK

EMDB-12708:
I-Layer C16 at 3.08A - Local refinement with C16 symmetry of I-layer of the outer membrane core complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK

EMDB-12709:
Stalk C1 at 3.71A - Local refinement without symmetry of the Stalk complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK

EMDB-12715:
IMC-Arches C6 at 8.33A - Refinement with C6 symmetry of the Inner Membrane Complex (IMC) with the Arches from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK

EMDB-12716:
Trimer of dimers TrwK/VirB4unbound C1 at 4.14A - Refinement without symmetry of TrwK/VirB4unbound trimer of dimers complex (with Hcp1) from the R388 type IV secretion system.
Method: single particle / : Vadakkepat AK, Mace K

EMDB-12717:
Dimer TrwK/VirB4unbound C1 at 3.49A - Local refinement without symmetry of the TrwK/VirB4unbound dimer complex from the R388 type IV secretion system.
Method: single particle / : Vadakkepat AK, Mace K

EMDB-12933:
IMC protomer C1 at 3.75A - Local refinement without symmetry of the inner membrane complex (IMC) protomer from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK

EMDB-13765:
OMCC C1 at 3.28A - Refinement without symmetry of the outer membrane core complex (O- and I-layer) from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK, Waksman G, Lukoyanova N

EMDB-13766:
Ab Initio model for IMC-Arches-Stalk from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Vadakkepat AK, Waksman G, Lukoyanova N

EMDB-13767:
IMC-Arches-Stalk C1 at 6.18A - Refinement of the IMC, Arches and Stalk complex without symmetry from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK

EMDB-13768:
Stalk C5 at 3.28A - Local refinement with C5 symmetry of the Stalk complex from the fully-assembled R388 type IV secretion system.
Method: single particle / : Mace K, Vadakkepat AK, Waksman G, Lukoyanova N

PDB-7o3j:
O-layer structure (TrwH/VirB7, TrwF/VirB9CTD, TrwE/VirB10CTD) of the outer membrane core complex from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Vadakkepat AK, Lukoyanova N, Waksman G

PDB-7o3t:
I-layer structure (TrwF/VirB9NTD, TrwE/VirB10NTD) of the outer membrane core complex from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Vadakkepat AK, Lukoyanova N, Waksman G

PDB-7o3v:
Stalk complex structure (TrwJ/VirB5-TrwI/VirB6) from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Vadakkepat AK, Lukoyanova N, Waksman G

PDB-7o41:
Hexameric composite model of the Inner Membrane Complex (IMC) with the Arches from the fully-assembled R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Mace K, Vadakkepat AK, Lukoyanova N, Waksman G

PDB-7o42:
TrwK/VirB4unbound trimer of dimers complex (with Hcp1) from the R388 type IV secretion system determined by cryo-EM.
Method: single particle / : Vadakkepat AK, Mace K, Lukoyanova N, Waksman G

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Nobel Prize for mechanically activated and temperature-gated ion channels

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