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Showing 1 - 50 of 1,313 items for (author: albert & l)

EMDB-55761:
Cryo-EM map of mouse heavy chain apoferritin
Method: single particle / : Haubner M, Williams HM, Hruby J, Guskov A, Kovalev K, Drabbels M, Lorenz UJ, Straub MS

EMDB-55765:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

EMDB-55766:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the K2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

EMDB-55769:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the O2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

PDB-9tbd:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

PDB-9tbe:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the K2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

PDB-9tbf:
Cryo-EM structure of the light-driven sodium pump ErNaR in the monomeric form in the O2 state
Method: single particle / : Haubner M, Williams HM, Hruby J, Straub MS, Guskov A, Kovalev K, Drabbels M, Lorenz UJ

EMDB-72471:
His-tagged beta galactosidase (LacZ) on a Ni-NTA lipid monolayer grid
Method: single particle / : Baker RW, Strauss JD

PDB-9y45:
His-tagged beta galactosidase (LacZ) on a Ni-NTA lipid monolayer grid
Method: single particle / : Baker RW, Strauss JD

EMDB-51252:
RNAP-TopoI complex on duplex scaffold - consensus map
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51253:
RNAP-TopoI complex on duplex scaffold - focused map (TopoI)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51254:
RNAP-TopoI complex on duplex scaffold - focused map (TopoI D2/D3)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51255:
RNAP-TopoI complex on duplex scaffold - focused map (RNAP core)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51256:
RNAP-TopoI complex on duplex scaffold - focused map (RNAP swivel module 1)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51257:
RNAP-TopoI complex on duplex scaffold - focused map (RNAP swivel module 2)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51258:
RNAP-TopoI complex on duplex scaffold - focused map (RNAP beta protrusion and lobe)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51259:
RNAP-TopoI complex on duplex scaffold
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51260:
RNAP-TopoI complex on bubble scaffold - consensus reconstruction
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51261:
RNAP-TopoI complex on bubble scaffold - single-bubble configuration
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51262:
RNAP-TopoI complex on bubble scaffold - two-bubble configuration
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51263:
RNAP-TopoI complex on long-overhang scaffold - orientation 1
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51264:
RNAP-TopoI complex on long-overhang scaffold - orientation 2
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51265:
RNAP-TopoI complex on duplex scaffold with visible TOPRIM loop - consensus map
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51266:
RNAP-TopoI complex on duplex scaffold with visible TOPRIM loop - focused map (TopoI)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51267:
RNAP-TopoI complex on duplex scaffold with visible TOPRIM loop
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51268:
RNAP-TopoI complex on long-overhang scaffold - orientation 3
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51269:
RNAP-TopoI complex on long-overhang scaffold - TopoI gate opening (orientation 2)
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51270:
RNAP-TopoI complex on short-overhang scaffold - orientation 1
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51271:
RNAP-TopoI complex on short-overhang scaffold - orientation 2
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

PDB-9gda:
RNAP-TopoI complex on duplex scaffold
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

PDB-9gdb:
RNAP-TopoI complex on bubble scaffold - consensus reconstruction
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

PDB-9gdc:
RNAP-TopoI complex on bubble scaffold - single-bubble configuration
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

PDB-9gdd:
RNAP-TopoI complex on bubble scaffold - two-bubble configuration
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

PDB-9gde:
RNAP-TopoI complex on long-overhang scaffold - orientation 1
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

PDB-9gdh:
RNAP-TopoI complex on long-overhang scaffold - orientation 2
Method: single particle / : Vidmar V, Weixlbaumer A, Lamour V

EMDB-51890:
ATP-bound human mitochondrial Hsp60-Hsp10 football complex (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

EMDB-51891:
ATP-bound human mitochondrial Hsp60-Hsp10 half football complex (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

EMDB-51892:
ATP-bound human mitochondrial Hsp60 double-ring complex (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

EMDB-51893:
Apo human mitochondrial Hsp60 (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

PDB-9h5s:
ATP-bound human mitochondrial Hsp60-Hsp10 football complex (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

PDB-9h5t:
ATP-bound human mitochondrial Hsp60-Hsp10 half football complex (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

PDB-9h5u:
ATP-bound human mitochondrial Hsp60 double-ring complex (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

PDB-9h5v:
Apo human mitochondrial Hsp60 (C1)
Method: single particle / : Lopez-Alonso JP, Tascon I, Ubarretxena-Belandia I

EMDB-50053:
Structural basis of specific lysine transport by Pseudomonas aeruginosa permease LysP
Method: single particle / : Nji E, Matsuoka R

PDB-9eyd:
Structural basis of specific lysine transport by Pseudomonas aeruginosa permease LysP
Method: single particle / : Nji E, Matsuoka R

EMDB-72472:
Human nucleosome structure on Nickel-NTA lipid affinity grid (C2 refinement)
Method: single particle / : Baker RW, Strauss JD, McGinty RK, Skrajna A

EMDB-72473:
Human nucleosome structure on Nickel-NTA lipid affinity grid (C1 refinement)
Method: single particle / : Baker RW, Strauss JD, McGinty RK, Skrajna A

EMDB-72474:
Sro7 bound to His-Exo84 (1-326) on a Nickel-NTA lipid monolayer
Method: single particle / : Baker RW, Strauss JD, McGinty RK

PDB-9y46:
Human nucleosome structure on Nickel-NTA lipid affinity grid (C2 refinement)
Method: single particle / : Baker RW, Strauss JD, McGinty RK, Skrajna A

PDB-9y47:
Human nucleosome structure on Nickel-NTA lipid affinity grid (C1 refinement)
Method: single particle / : Baker RW, Strauss JD, McGinty RK, Skrajna A

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

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  • EM Navigator can help to find cryo-EM structure data by both pioneers.

External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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