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Showing 1 - 50 of 51 items for (author: i-mei & yu)

EMDB-26707:
Human PORCN in complex with Palmitoleoyl-CoA
Method: single particle / : Liu Y, Qi X, Li X

EMDB-26708:
Human PORCN in complex with LGK974
Method: single particle / : Liu Y, Qi X, Li X

EMDB-26709:
Human PORCN in complex with LGK974 and WNT3A peptide
Method: single particle / : Liu Y, Qi X, Li X

EMDB-26710:
Human PORCN in complex with palmitoleoylated WNT3A peptide
Method: single particle / : Liu Y, Qi X, Li X

EMDB-26711:
Human HHAT H379C in complex with SHH N-terminal peptide
Method: single particle / : Liu Y, Qi X, Li X

PDB-7ura:
Human PORCN in complex with Palmitoleoyl-CoA
Method: single particle / : Liu Y, Qi X, Li X

PDB-7urc:
Human PORCN in complex with LGK974
Method: single particle / : Liu Y, Qi X, Li X

PDB-7urd:
Human PORCN in complex with LGK974 and WNT3A peptide
Method: single particle / : Liu Y, Qi X, Li X

PDB-7ure:
Human PORCN in complex with palmitoleoylated WNT3A peptide
Method: single particle / : Liu Y, Qi X, Li X

PDB-7urf:
Human HHAT H379C in complex with SHH N-terminal peptide
Method: single particle / : Liu Y, Qi X, Li X

EMDB-24310:
The structure of human ABCG5-WT/ABCG8-I419E
Method: single particle / : Sun Y, Li X, Long T

EMDB-24311:
The structure of human ABCG5-I529W/ABCG8-WT
Method: single particle / : Sun Y, Li X, Long T

EMDB-24312:
The structure of human ABCG5/ABCG8 purified from yeast
Method: single particle / : Sun Y, Li X, Long T

EMDB-24313:
The structure of human ABCG5/ABCG8 purified from mammalian cells
Method: single particle / : Sun Y, Li X, Long T

EMDB-24314:
The structure of human ABCG5/ABCG8 supplemented with cholesterol
Method: single particle / : Sun Y, Li X, Long T

EMDB-24315:
The structure of human ABCG1
Method: single particle / : Sun Y, Li X, Long T

EMDB-24316:
The structure of human ABCG1 E242Q with cholesterol
Method: single particle / : Sun Y, Li X, Long T

EMDB-24317:
The structure of human ABCG1 E242Q complexed with ATP
Method: single particle / : Sun Y, Li X, Long T

PDB-7r87:
The structure of human ABCG5-WT/ABCG8-I419E
Method: single particle / : Sun Y, Li X, Long T

PDB-7r88:
The structure of human ABCG5-I529W/ABCG8-WT
Method: single particle / : Sun Y, Li X, Long T

PDB-7r89:
The structure of human ABCG5/ABCG8 purified from yeast
Method: single particle / : Sun Y, Li X, Long T

PDB-7r8a:
The structure of human ABCG5/ABCG8 purified from mammalian cells
Method: single particle / : Sun Y, Li X, Long T

PDB-7r8b:
The structure of human ABCG5/ABCG8 supplemented with cholesterol
Method: single particle / : Sun Y, Li X, Long T

PDB-7r8c:
The structure of human ABCG1
Method: single particle / : Sun Y, Li X, Long T

PDB-7r8d:
The structure of human ABCG1 E242Q with cholesterol
Method: single particle / : Sun Y, Li X, Long T

PDB-7r8e:
The structure of human ABCG1 E242Q complexed with ATP
Method: single particle / : Sun Y, Li X, Long T

EMDB-3620:
Microtubule-bound MKLP2 motor domain in the presence of ADP
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

EMDB-3621:
Microtubule-bound MKLP2 motor domain in the with no nucleotide
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

EMDB-3622:
Microtubule-bound MKLP2 motor domain in the presence of ADP.AlFx
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

EMDB-3623:
Microtubule-bound MKLP2 motor domain in the presence of AMPPNP
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

PDB-5nd2:
Microtubule-bound MKLP2 motor domain in the presence of ADP
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

PDB-5nd3:
Microtubule-bound MKLP2 motor domain in the with no nucleotide
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

PDB-5nd4:
Microtubule-bound MKLP2 motor domain in the presence of ADP.AlFx
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

PDB-5nd7:
Microtubule-bound MKLP2 motor domain in the presence of AMPPNP
Method: single particle / : Atherton J, Yu IM, Cook A, Muretta JM, Joseph AP, Major J, Sourigues Y, Clause J, Topf M, Rosenfeld SS, Houdusse A, Moores CA

EMDB-2765:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

EMDB-2766:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

EMDB-2767:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

EMDB-2768:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

EMDB-2769:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

EMDB-2770:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

EMDB-2771:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

PDB-4uxo:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

PDB-4uxp:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

PDB-4uxr:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

PDB-4uxs:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

PDB-4uxt:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

PDB-4uxy:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

PDB-4uy0:
Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins
Method: single particle / : Atherton J, Farabella I, Yu IM, Rosenfeld SS, Houdusse A, Topf M, Moores C

EMDB-5006:
Structure of immature Dengue virus at low pH
Method: single particle / : Yu I, Zhang W, Holdaway HA, Li L, Kostyuchenko VA, Chipman PR, Kuhn RJ, Rossmann MG, Chen J

PDB-3c6r:
Low pH Immature Dengue Virus
Method: single particle / : Yu I, Zhang W, Holdway HA, Li L, Kostyuchenko VA, Chipman PR, Kuhn RJ, Rossmann MG, Chen J

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