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Showing 1 - 50 of 1,350 items for (author: simon & m)

EMDB-19406:
Structure of the human DDB1-DDA1-DCAF15 E3 ubiquitin ligase bound to compound furan 12
Method: single particle / : Shilliday F, Lucas SCC, Richter M, Michaelides IN, Fusani L

EMDB-19407:
Structure of the human DDB1-DDA1-DCAF15 E3 ubiquitin ligase bound to compound furan 24
Method: single particle / : Shilliday F, Lucas SCC, Richter M, Michaelides IN, Fusani L

PDB-8rox:
Structure of the human DDB1-DDA1-DCAF15 E3 ubiquitin ligase bound to compound furan 12
Method: single particle / : Shilliday F, Lucas SCC, Richter M, Michaelides IN, Fusani L

PDB-8roy:
Structure of the human DDB1-DDA1-DCAF15 E3 ubiquitin ligase bound to compound furan 24
Method: single particle / : Shilliday F, Lucas SCC, Richter M, Michaelides IN, Fusani L

EMDB-42343:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 5 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

EMDB-42344:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 6 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

PDB-8uk2:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 5 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

PDB-8uk3:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 6 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

EMDB-19184:
Late alpha-Synuclein fibril structure from liquid-liquid phase separations.
Method: helical / : De Simone A, Barritt JD, Chen S, Cascella R, Cecchi C, Bigi A, Jarvis JA, Chiti F, Dobson CM, Fusco G

PDB-8ri9:
Late alpha-Synuclein fibril structure from liquid-liquid phase separations.
Method: helical / : De Simone A, Barritt JD, Chen S, Cascella R, Cecchi C, Bigi A, Jarvis JA, Chiti F, Dobson CM, Fusco G

EMDB-17793:
Cryo-EM structure of cell-free synthesized human histamine H2 receptor coupled to heterotrimeric Gs protein in lipid environment
Method: single particle / : Schnelle K, Koeck Z, Persechino M, Umbach S, Schihada H, Januliene D, Parey K, Pockes S, Kolb P, Doetsch V, Moeller A, Hilger D, Bernhard F

PDB-8pok:
Cryo-EM structure of cell-free synthesized human histamine H2 receptor coupled to heterotrimeric Gs protein in lipid environment
Method: single particle / : Schnelle K, Koeck Z, Persechino M, Umbach S, Schihada H, Januliene D, Parey K, Pockes S, Kolb P, Doetsch V, Moeller A, Hilger D, Bernhard F

EMDB-19666:
Cryo-electron tomogram of apoferritin
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19667:
Cryo-electron tomogram of keyhole limpet hemocyanin
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19668:
Cryo-electron tomogram of TGEV virions
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19669:
Cryo-electron tomogram of Influenza virions
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19670:
Cryo-electron tomogram of Magnetospirillum gryphiswaldense
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19671:
In situ cryo-electron tomogram of Saccharomyces cerevisiae
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19672:
Cryo-electron tomogram of keyhole limpet hemocyanin (stage position)
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19673:
Cryo-electron tomogram of keyhole limpet hemocyanin (3 um image shift)
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-19674:
Cryo-electron tomogram of keyhole limpet hemocyanin (6 um image shift)
Method: electron tomography / : Comet M, Dijkman PM, Boer Iwema R, Franke T, Masiulis S, Schampers R, Raschdorf O, Grollios F, Pryor Jr EE, Drulyte I

EMDB-40603:
GPR161 Gs heterotrimer
Method: single particle / : Hoppe N, Manglik A, Harrison S

PDB-8smv:
GPR161 Gs heterotrimer
Method: single particle / : Hoppe N, Manglik A, Harrison S

EMDB-18120:
The closed state of the ASFV apo-RNA polymerase
Method: single particle / : Pilotto S, Sykora M, Cackett G, Werner F

EMDB-18129:
The open state of the ASFV apo-RNA polymerase
Method: single particle / : Pilotto S, Sykora M, Cackett G, Werner F

EMDB-18163:
consensus map of the ASFV RNA polymerase in open conformation
Method: single particle / : Pilotto S, Sykora M, Cackett G, Werner F

EMDB-18164:
The stalk domain of the ASFV RNA polymerase obtained from Multibody refinement
Method: single particle / : Pilotto S, Sykora M, Cackett G, Werner F

PDB-8q3b:
The closed state of the ASFV apo-RNA polymerase
Method: single particle / : Pilotto S, Sykora M, Cackett G, Werner F

PDB-8q3k:
The open state of the ASFV apo-RNA polymerase
Method: single particle / : Pilotto S, Sykora M, Cackett G, Werner F

EMDB-17704:
Subtomogram average of Vaccinia A10 trimer with open center from in vitro cores
Method: subtomogram averaging / : Turonova B, Liu J

EMDB-17708:
Subtomogram average of Vaccinia A10 trimer with tight center from in vitro cores
Method: subtomogram averaging / : Turonova B, Liu J

EMDB-17753:
Subtomogram average of Vaccinia A10 trimer from in situ cores
Method: subtomogram averaging / : Turonova B, Liu J

EMDB-19024:
Structure of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

EMDB-19025:
Structure of the five-fold capsomer of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

EMDB-19026:
Structure of the three-fold capsomer of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

EMDB-19027:
Structure of the two-fold capsomer of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

PDB-8rb3:
Structure of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

PDB-8rb4:
Structure of the five-fold capsomer of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

PDB-8rb5:
Structure of the three-fold capsomer of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

PDB-8rb7:
Structure of the two-fold capsomer of the PNMA2 capsid
Method: single particle / : Erlendsson S, Xu J, Shepherd JD, Briggs JAG

EMDB-16229:
Cryo-EM structure of the bacterial replication origin opening basal unwinding system
Method: single particle / : Pelliciari S, Bodet-Lefevre S, Murray H, Ilangovan A

PDB-8btg:
Cryo-EM structure of the bacterial replication origin opening basal unwinding system
Method: single particle / : Pelliciari S, Bodet-Lefevre S, Murray H, Ilangovan A

EMDB-40687:
PS3 F1 Rotorless, no ATP
Method: single particle / : Sobti M, Stewart AG

EMDB-40688:
PS3 F1 Rotorless, low ATP
Method: single particle / : Sobti M, Stewart AG

EMDB-40689:
PS3 F1 Rotorless, high ATP
Method: single particle / : Sobti M, Stewart AG

PDB-8spv:
PS3 F1 Rotorless, no ATP
Method: single particle / : Sobti M, Stewart AG

PDB-8spw:
PS3 F1 Rotorless, low ATP
Method: single particle / : Sobti M, Stewart AG

PDB-8spx:
PS3 F1 Rotorless, high ATP
Method: single particle / : Sobti M, Stewart AG

EMDB-16546:
structure of LEDGF/p75 PWWP domain bound to the H3K36 trimethylated dinucleosome
Method: single particle / : Koutna E, Kouba T, Novacek J, Veverka V

PDB-8cbn:
structure of LEDGF/p75 PWWP domain bound to the H3K36 trimethylated dinucleosome
Method: single particle / : Koutna E, Kouba T, Novacek J, Veverka V

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