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Showing 1 - 50 of 90 items for (author: naydenova & k)

EMDB-50913:
Structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50914:
Structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50915:
Consensus refinement of the complex between human RNF213 and the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Nadenova K, Randow F

EMDB-50916:
Local refinement of the RNF213 CBM domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50917:
Local refinement of the RNF213 stalk domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50918:
Local refinement of the RNF213 ATPase domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50919:
Local refinement of the RNF213 C-terminal and hinge domains in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50920:
Local refinement of the RNF213 E3 module in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50921:
Local refinement of the RNF213 RING domain and the IpaH1.4 LRR domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50922:
Consensus refinement of the complex between human RNF213 and the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50923:
Local refinement of the RNF213 CBM domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50924:
Local refinement of the RNF213 stalk domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50925:
Local refinement of the RNF213 ATPase domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50926:
Local refinement of the RNF213 C-terminal and hinge domains in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50928:
Local refinement of the RNF213 E3 module in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50929:
Local refinement of the RNF213 RING domain and the IpaH2.5 LRR domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

PDB-9g08:
Structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

PDB-9g09:
Structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-51963:
Cryo-EM structure of the human GABAA receptor alpha1 subunit in complex with the assembly factor NACHO/TMEM35A
Method: single particle / : Hooda Y, Sente A, Judy RM, Smalinskaite L, Peak-Chew S, Naydenova K, Malinauskas T, Hardwick SW, Chirgadze DY, Aricescu AR, Hegde RS

PDB-9h9e:
Cryo-EM structure of the human GABAA receptor alpha1 subunit in complex with the assembly factor NACHO/TMEM35A
Method: single particle / : Hooda Y, Sente A, Judy RM, Smalinskaite L, Peak-Chew S, Naydenova K, Malinauskas T, Hardwick SW, Chirgadze DY, Aricescu AR, Hegde RS

EMDB-19653:
Structure of the E3 ubiquitin ligase RNF213, determined by cryoEM
Method: single particle / : Naydenova K, Randow F

EMDB-19654:
Human RNF213 (consensus refinement without accounting for flexibility)
Method: single particle / : Naydenova K, Randow F

EMDB-19655:
Human RNF213: focused refinement of ATPase domain
Method: single particle / : Naydenova K, Randow F

EMDB-19656:
Human RNF213: focused refinement of stalk domain
Method: single particle / : Naydenova K, Randow F

EMDB-19657:
Human RNF213: focused refinement of carbohydrate binding module (CBM) domain
Method: single particle / : Naydenova K, Randow F

EMDB-19658:
Human RNF213: focused refinement of E3 ligase domain
Method: single particle / : Naydenova K, Randow F

EMDB-19659:
Human RNF213: focused refinement of E3-RING domain
Method: single particle / : Naydenova K, Randow F

PDB-8s24:
Structure of the E3 ubiquitin ligase RNF213, determined by cryoEM
Method: single particle / : Naydenova K, Randow F

EMDB-17961:
Structure of mouse heavy-chain apoferritin determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

EMDB-17965:
Structure of E. coli glutamine synthetase determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pv9:
Structure of DPS determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pva:
Structure of bacterial ribosome determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvb:
Structure of GABAAR determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvc:
Structure of mouse heavy-chain apoferritin determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvd:
Structure of catalase determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pve:
Structure of AHIR determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvf:
Structure of GAPDH determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvg:
Structure of E. coli glutamine synthetase determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvh:
Structure of human apo ALDH1A1 determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvi:
Structure of PaaZ determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

PDB-8pvj:
Structure of lumazine synthase determined by cryoEM at 100 keV
Method: single particle / : McMullan G, Naydenova K, Mihaylov D, Peet MJ, Wilson H, Yamashita K, Dickerson JL, Chen S, Cannone G, Lee Y, Hutchings KA, Gittins O, Sobhy M, Wells T, El-Gomati MM, Dalby J, Meffert M, Schulze-Briese C, Henderson R, Russo CJ

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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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