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Showing 1 - 50 of 177 items for (author: ueno & h)

EMDB-49363:
Cryo-EM map of the inactive conformation of a glycoside hydrolase (CapGH2b) from the GH2 family
Method: single particle / : Martins MP, Dolce LG, Santos CR, Murakami MT

EMDB-49364:
Active conformation of a redox-regulated glycoside hydrolase (CapGH2b) from the GH2 family
Method: single particle / : Martins MP, Santos CR, Dolce LG, Murakami MT

PDB-9nfe:
Active conformation of a redox-regulated glycoside hydrolase (CapGH2b) from the GH2 family
Method: single particle / : Martins MP, Santos CR, Dolce LG, Murakami MT

EMDB-49839:
ATPase Hybrid F1 with the ancestral core domains Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49840:
ATPase Hybrid F1 with the ancestral core domains Catalytic Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49841:
ATPase hybrid F1 with the ancestral core domains Hexamer without stalk Binding dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49842:
ATPase hybrid F1 with the ancestral core domains Tetramer with stalk Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49843:
ATPase hybrid F1 with the ancestral core domains Tetramer no stalk Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

PDB-9nvl:
ATPase Hybrid F1 with the ancestral core domains Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

PDB-9nvm:
ATPase Hybrid F1 with the ancestral core domains Catalytic Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-52187:
Amyloid DNA Bridging by Hfq C-terminal region
Method: helical / : Gragera M, Arluison V

EMDB-52764:
Structure of the Mycobacterium tuberculosis ClpC1P1P2 complex bound to the activator Bz-LL - focused refinement ClpC1
Method: single particle / : Semchonok DA, Weinhaeupl K, Gragera M, Arranz R, Bueno Carrasco MT, Fraga H

EMDB-52840:
Structure of the Mycobacterium Tuberculosis ClpC1P1P2 complex bound to the activator Bz-Leu-Leu
Method: single particle / : Weinhaeupl K, Semchonok D, Gragera M, Arranz R, Bueno Carrasco MT, Fraga H

PDB-9if4:
Structure of the Mycobacterium Tuberculosis ClpC1P1P2 complex bound to the activator Bz-Leu-Leu
Method: single particle / : Weinhaeupl K, Semchonok D, Gragera M, Arranz R, Bueno Carrasco MT, Fraga H

EMDB-52766:
Structure of the Mycobacterium tuberculosis ClpC1P1P2 complex bound to the activator Bz-LL - focused map ClpP1P2
Method: single particle / : Semchonok D, Weinhaeupl K, Gragera M, Arranz R, Bueno Carrasco MT, Fraga H

EMDB-52765:
Structure of the Mycobacterium tuberculosis ClpC1P1P2 complex bound to the activator Bz-LL - consensus map
Method: single particle / : Semchonok D, Weinhaeupl K, Gragera M, Arranz R, Bueno Carrasco MT, Fraga H

EMDB-61339:
Engineering of ATP synthase
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61340:
Engineering of ATP synthase Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61341:
Engineering of ATP synthase single stalk1
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61342:
Engineering of ATP synthase single stalk2
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61343:
Engineering of ATP synthase single stalk3
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61344:
Engineering of ATP synthase Double stalks1,2
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61345:
Engineering of ATP synthase Double stalks1,3
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61346:
Engineering of ATP synthase Double stalks2,3
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61347:
Engineering of ATP synthase Zero stalk
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61348:
Engineering of ATP synthase single stalk1 Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61349:
Engineering of ATP synthase single stalk2 Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61350:
Engineering of ATP synthase single stalk3 Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61351:
Engineering of ATP synthase Double stalks1,2 Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61352:
Engineering of ATP synthase Double stalks1,3 Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61353:
Engineering of ATP synthase Double stalks2,3 Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-61354:
Engineering of ATP synthase Zero stalk Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

PDB-9jc1:
Engineering of ATP synthase
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

PDB-9jc2:
Engineering of ATP synthase Fo
Method: single particle / : Hamaguchi-Suzuki N, Ueno H, Yasuda K, Marui R, Adachi N, Senda T, Noji H, Murata T

EMDB-53294:
Structure of the Azotobacter vinelandii NifL-NifA complex
Method: single particle / : Bueno Batista M, Richardson J, Webster MW, Ghilarov D, Peters JW, Lawson DM, Dixon R

PDB-9qq6:
Structure of the Azotobacter vinelandii NifL-NifA complex
Method: single particle / : Bueno Batista M, Richardson J, Webster MW, Ghilarov D, Peters JW, Lawson DM, Dixon R

EMDB-45157:
SARS-CoV-2 Nucleocapsid Dimerization Domain bound to Fab-NP1E9 and Fab-NP3B4
Method: single particle / : Landeras-Bueno S, Hariharan C, Diaz Avalos R, Ollmann Saphire E

EMDB-45158:
SARS-CoV-2 Nucleocapsid dimer complexed to 24 bp RNA
Method: single particle / : Landeras-Bueno S, Ollmann-Saphire E

PDB-9c2h:
SARS-CoV-2 Nucleocapsid Dimerization Domain bound to Fab-NP1E9 and Fab-NP3B4
Method: single particle / : Landeras-Bueno S, Hariharan C, Diaz Avalos R, Ollmann Saphire E

EMDB-53347:
Structure of the 50S ribosomal subunit from the antibiotic-producing bacterium Streptomyces fradiae
Method: single particle / : Ekemezie CL, Melnikov SV

PDB-9qt5:
Structure of the 50S ribosomal subunit from the antibiotic-producing bacterium Streptomyces fradiae
Method: single particle / : Ekemezie CL, Melnikov SV

EMDB-52036:
Cryo-EM structure of P. urativorans 70S ribosome with 2 copies of bS20.
Method: single particle / : Helena-Bueno K, Hill CH, Melnikov SV

EMDB-52351:
subtomogram average of the P. urativorans 70S ribosome
Method: subtomogram averaging / : Kopetschke S, Pfeffer S

EMDB-52352:
subtomogram average of the P. urativorans 70S ribosome with one copy of bS20
Method: subtomogram averaging / : Kopetschke S, Pfeffer S

EMDB-52354:
subtomogram average of the P. urativorans 70S ribosome with two copies of bS20
Method: subtomogram averaging / : Kopetschke S, Pfeffer S

EMDB-52842:
Cryo-ET of cryo-FIB milled P. urativorans grown at physiological conditions
Method: electron tomography / : Kopetschke S, Pfeffer S

PDB-9hc4:
Cryo-EM structure of P. urativorans 70S ribosome with 2 copies of bS20.
Method: single particle / : Helena-Bueno K, Hill CH, Melnikov SV

EMDB-52781:
Structure of beta-lactoglobulin fibril
Method: helical / : Sternke-Hoffmann R, Rhyner D, Qureshi B, Riek R, Greenwald J, Luo J

PDB-9iah:
Structure of beta-lactoglobulin fibril
Method: helical / : Sternke-Hoffmann R, Rhyner D, Qureshi B, Riek R, Greenwald J, Luo J

EMDB-60274:
SARS-CoV-2 XBB.1.5 spike glycoprotein trimer in complex with antigen-binding fragments (Fabs)
Method: single particle / : Sugita Y, Kimura K, Noda T, Hashiguchi T

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