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Showing 1 - 50 of 116 items for (author: maya & topf)

EMDB-13269:
The pore conformation of lymphocyte perforin
Method: single particle / : Ivanova ME, Lukoyanova N, Malhotra S, Topf M, Trapani JA, Voskoboinik I, Saibil HR

PDB-7pag:
The pore conformation of lymphocyte perforin
Method: single particle / : Ivanova ME, Lukoyanova N, Malhotra S, Topf M, Trapani JA, Voskoboinik I, Saibil HR

EMDB-12257:
Plasmodium falciparum kinesin-5 motor domain without nucleotide, complexed with 14 protofilament microtubule.
Method: helical / : Cook AD, Roberts A, Atherton J, Tewari R, Topf M, Moores CA

EMDB-12258:
Plasmodium falciparum kinesin-5 motor domain bound to AMPPNP, complexed with 14 protofilament microtubule.
Method: helical / : Cook AD, Roberts A, Atherton J, Tewari R, Topf M, Moores CA

PDB-7nb8:
Plasmodium falciparum kinesin-5 motor domain without nucleotide, complexed with 14 protofilament microtubule.
Method: helical / : Cook AD, Roberts A, Atherton J, Tewari R, Topf M, Moores CA

PDB-7nba:
Plasmodium falciparum kinesin-5 motor domain bound to AMPPNP, complexed with 14 protofilament microtubule.
Method: helical / : Cook AD, Roberts A, Atherton J, Tewari R, Topf M, Moores CA

EMDB-10421:
Human kinesin-5 motor domain in the GSK-1 state bound to microtubules
Method: helical / : Pena A, Sweeney A, Cook AD, Moores CA, Topf M

PDB-6ta3:
Human kinesin-5 motor domain in the GSK-1 state bound to microtubules (Conformation 1)
Method: helical / : Pena A, Sweeney A, Cook AD, Moores CA, Topf M

EMDB-10422:
Human kinesin-5 motor domain in the AMPPNP state bound to microtubules
Method: helical / : Pena AP, Sweeney A, Cook AD, Moores CA, Topf M

PDB-6ta4:
Human kinesin-5 motor domain in the AMPPNP state bound to microtubules
Method: helical / : Pena AP, Sweeney A, Cook AD, Moores CA, Topf M

PDB-6tiw:
Human kinesin-5 motor domain in the GSK state bound to microtubules (Conformation 2)
Method: helical / : Pena A, Sweeney A, Cook AD, Moores CA, Topf M

EMDB-10002:
BACTERIOPHAGE SPP1 PROCAPSID-II PROTEIN
Method: single particle / : Ignatiou A, Brasiles S, El Sadek M, Buerger J, Mielke T, Topf M, Tavares P

EMDB-4716:
BACTERIOPHAGE SPP1 MATURE CAPSID PROTEIN
Method: single particle / : Ignatiou A, El Sadek Fadel M, Buerger J, Mielke T, Topf M, Tavares P

EMDB-4717:
BACTERIOPHAGE SPP1 PROCAPSID-I PROTEIN
Method: single particle / : Ignatiou A, Brasiles S, El Sadek-Fadel M, Buerger J, Mielke T, Topf M, Tavares P

PDB-6r3a:
BACTERIOPHAGE SPP1 MATURE CAPSID PROTEIN
Method: single particle / : Ignatiou A, El Sadek Fadel M, Buerger J, Mielke T, Topf M, Tavares P

PDB-6r3b:
BACTERIOPHAGE SPP1 PROCAPSID-I PROTEIN
Method: single particle / : Ignatiou A, Brasiles S, El Sadek-Fadel M, Buerger J, Mielke T, Topf M, Tavares P

PDB-6rtl:
BACTERIOPHAGE SPP1 PROCAPSID-II PROTEIN
Method: single particle / : Ignatiou A, Brasiles S, El Sadek M, Buerger J, Mielke T, Topf M, Tavares P

EMDB-0106:
OPEN CONFORMATION OF THE MEMBRANE ATTACK COMPLEX
Method: single particle / : Menny A, Serna M, Boyd CM, Gardner S, Joseph AP, Topf M, Bubeck D

EMDB-0107:
Closed conformation of the Membrane Attack Complex
Method: single particle / : Menny A, Serna M, Boyd CM, Gardner S, Joseph AP, Topf M, Bubeck D

EMDB-0109:
Asymmetric region of the Membrane Attack Complex in the closed conformation
Method: single particle / : Menny A, Serna M, Boyd CB, Gardener S, Joseph AP, Topf M, Bubeck D

EMDB-0110:
Consensus map of the Membrane Attack Complex
Method: single particle / : Menny A, Serna M, Boyd CB, Gardener S, Joseph AP, Topf M, Bubeck D

EMDB-0111:
Asymmetric region of the Membrane Attack Complex in the open conformation
Method: single particle / : Menny A, Serna M, Boyd CB, Gardener S, Joseph AP, Topf M, Bubeck D

EMDB-0112:
Hinge region of the Membrane Attack Complex in the open conformation
Method: single particle / : Menny A, Serna M, Boyd CB, Gardener S, Joseph AP, Topf M, Bubeck D

EMDB-0113:
C9 oligomer region of the Membrane Attack Complex in the open conformation
Method: single particle / : Menny A, Serna M, Boyd CB, Gardener S, Joseph AP, Topf M, Bubeck D

PDB-6h03:
OPEN CONFORMATION OF THE MEMBRANE ATTACK COMPLEX
Method: single particle / : Menny A, Serna M, Boyd CM, Gardner S, Joseph AP, Topf M, Bubeck D

PDB-6h04:
Closed conformation of the Membrane Attack Complex
Method: single particle / : Menny A, Serna M, Boyd CM, Gardner S, Joseph AP, Topf M, Bubeck D

EMDB-3778:
Molecular basis of human kinesin-8 function and inhibition
Method: helical / : Locke J, Joseph AP, Topf M, Moores CA

EMDB-3780:
Molecular basis of human kinesin-8 function and inhibition
Method: helical / : Locke J, Joseph AP, Topf M, Moores CA

EMDB-3803:
Molecular basis of human kinesin-8 function and inhibition
Method: helical / : Locke J, Joseph AP, Topf M, Moores CA

PDB-5oam:
Molecular basis of human kinesin-8 function and inhibition
Method: helical / : Locke J, Joseph AP, Topf M, Moores CA

PDB-5ocu:
Molecular basis of human kinesin-8 function and inhibition
Method: helical / : Locke J, Joseph AP, Topf M, Moores CA

PDB-5ogc:
Molecular basis of human kinesin-8 function and inhibition
Method: helical / : Locke J, Joseph AP, Topf M, Moores CA

EMDB-3444:
Mechanism of microtubule minus-end recognition and protection by CAMSAP proteins
Method: single particle / : Akhmanova A, Moores CA, Baldus M, Steinmetz MO, Topf M, Roberts AJ, Grant BJ, Scarabelli G, Joseph AP, van Hooff JJE, Houben K, Hua S, Luo Y, Stangier MM, Jiang K, Atherton J

EMDB-4154:
Mechanism of microtubule minus-end recognition and protection by CAMSAP proteins
Method: single particle / : Akhmanova A, Moores CA, Baldus M, Steinmetz MO, Topf M, Roberts AJ, Grant BJ, Scarabelli G, Joseph AP, van Hooff JJE, Houben K, Hua S, Luo Y, Stangier MM, Jiang K, Atherton J

EMDB-4156:
Mechanism of microtubule minus-end recognition and protection by CAMSAP proteins
Method: single particle / : Akhmanova A, Moores CA, Baldus M, Steinmetz MO, Topf M, Roberts AJ, Grant BJ, Scarabelli G, Joseph AJ, van Hooff JJE, Houben K, Hua S, Luo Y, Stangier MM, Jiang K, Atherton J

PDB-5m50:
Mechanism of microtubule minus-end recognition and protection by CAMSAP proteins
Method: single particle / : Akhmanova A, Moores CA, Baldus M, Steinmetz MO, Topf M, Roberts AJ, Grant BJ, Scarabelli G, Joseph AP, van Hooff JJE, Houben K, Hua S, Luo Y, Stangier MM, Jiang K, Atherton J

PDB-5m54:
Mechanism of microtubule minus-end recognition and protection by CAMSAP proteins
Method: single particle / : Akhmanova A, Moores CA, Baldus M, Steinmetz MO, Topf M, Roberts AJ, Grant BJ, Scarabelli G, Joseph AJ, van Hooff JJE, Houben K, Hua S, Luo Y, Stangier MM, Jiang K, Atherton J

PDB-5m5c:
Mechanism of microtubule minus-end recognition and protection by CAMSAP proteins
Method: single particle / : Akhmanova A, Moores CA, Baldus M, Steinmetz MO, Topf M, Roberts AJ, Grant BJ, Scarabelli G, Joseph AP, van Hooff JJE, Houben K, Hua S, Luo Y, Stangier MM, Jiang K, Atherton J

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

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