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Showing 1 - 50 of 729 items for (author: roy & p)

EMDB-71784:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep hexamer
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

EMDB-71786:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep hexamer with endonuclease domain density
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

EMDB-71787:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep pentamer
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

EMDB-71788:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep double hexamer with C1 symmetry
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

EMDB-71789:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep double hexamer with C6 symmetry
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

EMDB-71790:
Cryo-EM structure of ADP-bound Vientovirus FB Rep hexamer
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

PDB-9pqj:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep hexamer
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

PDB-9pqm:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep hexamer with endonuclease domain density
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

PDB-9pqo:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep pentamer
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

PDB-9pqq:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep double hexamer with C1 symmetry
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

PDB-9pqr:
Cryo-EM structure of ATPgammaS-bound Vientovirus FB Rep double hexamer with C6 symmetry
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

PDB-9pqt:
Cryo-EM structure of ADP-bound Vientovirus FB Rep hexamer
Method: single particle / : Montermoso S, Gupta K, Pumroy RA, Moiseenkova-Bell V, Bushman FD, Van Duyne GD

EMDB-72478:
Strand displacement state I of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

EMDB-72479:
Strand displacement state II of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

EMDB-72480:
Strand displacement state III of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

EMDB-72481:
Strand displacement state IV of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

PDB-9y4c:
Strand displacement state I of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

PDB-9y4d:
Strand displacement state II of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

PDB-9y4e:
Strand displacement state III of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

PDB-9y4f:
Strand displacement state IV of Human mitochondrial DNA polymerase gamma ternary complex
Method: single particle / : Park J, Yin YW

EMDB-63404:
PSI-LHCI supercomplex binding with 4 Lhcas from M. polymorpha
Method: single particle / : Tsai PC, La Rocca R, Shen JR, Akita F

EMDB-63405:
PSI-4 LHCI dimer supercomplex from M. polymorpha
Method: single particle / : Tsai PC, La Rocca R, Shen JR, Akita F

PDB-9lut:
PSI-LHCI supercomplex binding with 4 Lhcas from M. polymorpha
Method: single particle / : Tsai PC, La Rocca R, Shen JR, Akita F

PDB-9luu:
PSI-4 LHCI dimer supercomplex from M. polymorpha
Method: single particle / : Tsai PC, La Rocca R, Shen JR, Akita F

EMDB-71415:
Yeast Respiratory SuperComplex - deltaQCR6
Method: single particle / : Baker ML

EMDB-71416:
Yeast Respiratory SuperComplex - non uniform refinement
Method: single particle / : Baker ML

EMDB-49892:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fishcer ES

EMDB-49893:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449;G416A)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fischer ES

PDB-9nws:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fishcer ES

PDB-9nwt:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449;G416A)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fischer ES

EMDB-63082:
Cryo-EM structure of ToMMV
Method: helical / : Chatterjee A, Venkatasubramanian A, Mazumdar P, Singh SK, Roy A, Das U, Mandal B, Datta PP

EMDB-47875:
Human TRPML1 bound to Sybody57
Method: single particle / : Pumroy RP, Christensen CR, Salphati SP, Moiseenkova-Bell VY, Newstead S

PDB-9eba:
Human TRPML1 bound to Sybody57
Method: single particle / : Pumroy RP, Christensen CR, Salphati SP, Moiseenkova-Bell VY, Newstead S

EMDB-47874:
Human TRPML1 bound to Sybody94
Method: single particle / : Pumroy RP, Salphati SP, Moiseenkova-Bell VY, Newstead S

PDB-9eb9:
Human TRPML1 bound to Sybody94
Method: single particle / : Pumroy RP, Salphati SP, Moiseenkova-Bell VY, Newstead S

EMDB-54112:
CryoEM structure of the microtubule-AKAP13 C1 domain complex
Method: single particle / : Giono M, Choi SR, Filipcik P, Steinmetz MO

EMDB-52773:
LpDE from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

EMDB-52777:
LpDE from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

EMDB-52778:
LpDEM from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

EMDB-52779:
LpDEM from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

PDB-9i9z:
LpDE from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

PDB-9ia0:
LpDE from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

PDB-9ia2:
LpDEM from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

PDB-9ia5:
LpDEM from Escherichia coli
Method: single particle / : Siroy R, Fronzes R, Ieva R

EMDB-73631:
The Kaggle CryoET Object Identification Challenge: ground truth 80S ribosome
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73633:
The Kaggle CryoET Object Identification Challenge: first place 80S ribosome
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73634:
The Kaggle CryoET Object Identification Challenge: ground truth apo-ferritin
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73635:
The Kaggle CryoET Object Identification Challenge: first place apo-ferritin
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73636:
The Kaggle CryoET Object Identification Challenge: ground truth virus-like-particle
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73637:
The Kaggle CryoET Object Identification Challenge: first place virus-like-particle
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

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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.

Related info.:EMDB header

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • 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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