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Showing 1 - 50 of 4,650 items for (author: bu & g)

EMDB-42949:
Microtubule inner proteins in the 48-nm doublet microtubule from the proximal region of Tetrahymena thermophila strain K40R
Method: single particle / : Legal T, Bui KH, Yang SK

PDB-8v3l:
Microtubule inner proteins in the 48-nm doublet microtubule from the proximal region of Tetrahymena thermophila strain K40R
Method: single particle / : Legal T, Bui KH

EMDB-18609:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form at pH 8.0
Method: single particle / : Kovalev K, Podoliak E, Lamm GHU, Marin E, Stetsenko A, Guskov A

EMDB-18610:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form at pH 4.3
Method: single particle / : Kovalev K, Podoliak E, Lamm GHU, Marin E, Stetsenko A, Guskov A

PDB-8qqz:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form at pH 8.0
Method: single particle / : Kovalev K, Podoliak E, Lamm GHU, Marin E, Stetsenko A, Guskov A

PDB-8qr0:
Cryo-EM structure of the light-driven sodium pump ErNaR in the pentameric form at pH 4.3
Method: single particle / : Kovalev K, Podoliak E, Lamm GHU, Marin E, Stetsenko A, Guskov A

EMDB-42464:
chEnv TTT protein in complex with 43A2 Fab
Method: single particle / : Ozorowski G, Lee WH, Ward AB

EMDB-42468:
chEnv TTT protein in complex with CM01A Fab
Method: single particle / : Ozorowski G, Lee WH, Ward AB

EMDB-50022:
Influenza virus neuraminidase N1 NC13 ectodomain with a tetrabrachio-domain stalk
Method: single particle / : Roelofs MC, Zeev-Ben-Mordehai T

EMDB-18963:
Structure of the SFTSV L protein in a transcription-priming state without capped RNA [TRANSCRIPTION-PRIMING (in vitro)]
Method: single particle / : Williams HM, Thorkelsson SR, Vogel D, Busch C, Milewski M, Cusack S, Grunewald K, Quemin ERJ, Rosenthal M

EMDB-18967:
Structure of the SFTSV L protein in a transcription-priming state with bound capped RNA [TRANSCRIPTION-PRIMING]
Method: single particle / : Williams HM, Thorkelsson SR, Vogel D, Busch C, Milewski M, Cusack S, Grunewald K, Quemin ERJ, Rosenthal M

EMDB-18969:
Structure of the SFTSV L protein stalled in a transcription-specific early elongation state with bound capped RNA [TRANSCRIPTION-EARLY-ELONGATION]
Method: single particle / : Williams HM, Thorkelsson SR, Vogel D, Busch C, Milewski M, Cusack S, Grunewald K, Quemin ERJ, Rosenthal M

PDB-8r6u:
Structure of the SFTSV L protein in a transcription-priming state without capped RNA [TRANSCRIPTION-PRIMING (in vitro)]
Method: single particle / : Williams HM, Thorkelsson SR, Vogel D, Busch C, Milewski M, Cusack S, Grunewald K, Quemin ERJ, Rosenthal M

PDB-8r6w:
Structure of the SFTSV L protein in a transcription-priming state with bound capped RNA [TRANSCRIPTION-PRIMING]
Method: single particle / : Williams HM, Thorkelsson SR, Vogel D, Busch C, Milewski M, Cusack S, Grunewald K, Quemin ERJ, Rosenthal M

PDB-8r6y:
Structure of the SFTSV L protein stalled in a transcription-specific early elongation state with bound capped RNA [TRANSCRIPTION-EARLY-ELONGATION]
Method: single particle / : Williams HM, Thorkelsson SR, Vogel D, Busch C, Milewski M, Cusack S, Grunewald K, Quemin ERJ, Rosenthal M

EMDB-40180:
MsbA bound to cerastecin C
Method: single particle / : Chen Y, Klein D

EMDB-18214:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex - hexameric assembly
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-18216:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex in unneddylated and neddylated conformation - focused cullin dimer
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-18217:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex in unneddylated and neddylated conformation - focused on E2-like density
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-18218:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex in unneddylated and neddylated conformation - focused dimeric core
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-18220:
Structure of the hexameric CUL9-RBX1 complex with deletion of CUL9 CPH domain
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-18221:
Structure of the hexameric CUL9-RBX1 complex with deletion of CUL9 DOC domain
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-18222:
Structure of the hexameric CUL9-RBX1 complex with deletion of CUL9 ARM9 domain
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-18223:
Structure of the hexameric CUL9-RBX1 complex with deletion of CUL9 ARIH-RBR element
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

EMDB-19179:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex in unneddylated conformation - symmetry expanded unneddylated dimer
Method: single particle / : Hopf LVM, Horn-Ghetko D, Prabu JR, Schulman BA

PDB-8q7e:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex - hexameric assembly
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

PDB-8q7h:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex in unneddylated and neddylated conformation - focused cullin dimer
Method: single particle / : Hopf LVM, Horn-Ghetko D, Schulman BA

PDB-8rhz:
Structure of CUL9-RBX1 ubiquitin E3 ligase complex in unneddylated conformation - symmetry expanded unneddylated dimer
Method: single particle / : Hopf LVM, Horn-Ghetko D, Prabu JR, Schulman BA

EMDB-43664:
Triple tandem trimer immunogens for HIV-1 and influenza nucleic acid-based vaccines
Method: single particle / : Ferguson JA, Leon AN, Ward AB

EMDB-43665:
Triple tandem trimer immunogens for HIV-1 and influenza nucleic acid-based vaccines (cH125 TTT)
Method: single particle / : Ferguson JA, Leon AN, Ward AB

EMDB-43666:
Triple tandem trimer immunogens for HIV-1 and influenza nucleic acid-based vaccines (H2/1 GCN4)
Method: single particle / : Ferguson JA, Leon AN, Ward AB

EMDB-43668:
Triple tandem trimer immunogens for HIV-1 and influenza nucleic acid-based vaccines (H5/1 GCN4)
Method: single particle / : Ferguson JA, Leon AN, Ward AB

EMDB-43669:
Triple tandem trimer immunogens for HIV-1 and influenza nucleic acid-based vaccines. H5 GCN4
Method: single particle / : Ferguson JA, Leon AN, Ward AB

EMDB-17125:
Knockout of GMC-oxidoreductase genes reveals that functional redundancy preserves mimivirus essential functions
Method: helical / : Alempic JM, Bisio H, Villalta A, Santini S, Lartigue A, Schmitt A, Bugnot C, Notaro A, Belmudes L, Adrait A, Poirot O, Ptchelkine D, De Castro C, Coute Y, Abergel C

EMDB-17131:
Knockout of GMC-oxidoreductase genes reveals that functional redundancy preserves mimivirus essential functions
Method: helical / : Alempic JM, Bisio H, Villalta A, Santini S, Lartigue A, Schmitt A, Bugnot C, Notaro A, Belmudes L, Adrait A, Poirot O, Ptchelkine D, De Castro C, Coute Y, Abergel C

PDB-8orh:
Knockout of GMC-oxidoreductase genes reveals that functional redundancy preserves mimivirus essential functions
Method: helical / : Alempic JM, Bisio H, Villalta A, Santini S, Lartigue A, Schmitt A, Bugnot C, Notaro A, Belmudes L, Adrait A, Poirot O, Ptchelkine D, De Castro C, Coute Y, Abergel C

PDB-8ors:
Knockout of GMC-oxidoreductase genes reveals that functional redundancy preserves mimivirus essential functions
Method: helical / : Alempic JM, Bisio H, Villalta A, Santini S, Lartigue A, Schmitt A, Bugnot C, Notaro A, Belmudes L, Adrait A, Poirot O, Ptchelkine D, De Castro C, Coute Y, Abergel C

EMDB-19856:
Focused map 1- K48-linked ubiquitin chain formation with a cullin-RING E3 ligase & Cdc34: NEDD8-CUL2-RBX1-ELOB/C-FEM1C with trapped UBE2R2~donor UB~acceptor UB-SIL1 peptide
Method: single particle / : Liwocha J, Prabu JR, Kleiger G, Schulman BA

EMDB-19857:
Focused map 2 - K48-linked ubiquitin chain formation with a cullin-RING E3 ligase & Cdc34: NEDD8-CUL2-RBX1-ELOB/C-FEM1C with trapped UBE2R2~donor UB~acceptor UB-SIL1 peptide
Method: single particle / : Liwocha J, Prabu JR, Kleiger G, Schulman BA

EMDB-19858:
Focused map 3 - K48-linked ubiquitin chain formation with a cullin-RING E3 ligase & Cdc34: NEDD8-CUL2-RBX1-ELOB/C-FEM1C with trapped UBE2R2~donor UB~acceptor UB-SIL1 peptide
Method: single particle / : Liwocha J, Prabu JR, Kleiger G, Schulman BA

EMDB-19859:
Focused map 4 - K48-linked ubiquitin chain formation with a cullin-RING E3 ligase & Cdc34: NEDD8-CUL2-RBX1-ELOB/C-FEM1C with trapped UBE2R2~donor UB~acceptor UB-SIL1 peptide
Method: single particle / : Liwocha J, Prabu JR, Kleiger G, Schulman BA

EMDB-19860:
Focused map 5 - K48-linked ubiquitin chain formation with a cullin-RING E3 ligase & Cdc34: NEDD8-CUL2-RBX1-ELOB/C-FEM1C with trapped UBE2R2~donor UB~acceptor UB-SIL1 peptide
Method: single particle / : Liwocha J, Prabu JR, Kleiger G, Schulman BA

EMDB-41363:
Cryo-EM structure of DDB1deltaB-DDA1-DCAF5
Method: single particle / : Yue H, Hunkeler M, Roy Burman SS, Fischer ES

PDB-8tl6:
Cryo-EM structure of DDB1deltaB-DDA1-DCAF5
Method: single particle / : Yue H, Hunkeler M, Roy Burman SS, Fischer ES

EMDB-18304:
Outer kinetochore Ndc80-Dam1 alpha/beta-tubulin complex
Method: single particle / : Muir KW, Barford D

EMDB-37850:
Cryo-EM structure of native H. thermoluteolus TH-1 GroEL
Method: single particle / : Liao Z, Gopalasingam CC, Kameya M, Gerle C, Shigematsu H, Ishii M, Arakawa T, Fushinobu S

EMDB-37853:
Cryo-EM structure of H. thermoluteolus GroEL-GroES2 football complex
Method: single particle / : Liao Z, Gopalasingam CC, Kameya M, Gerle C, Shigematsu H, Ishii M, Arakawa T, Fushinobu S

EMDB-37862:
Cryo-EM structure of H. thermophilus GroEL-GroES2 asymmetric football complex
Method: single particle / : Liao Z, Gopalasingam CC, Kameya M, Gerle C, Shigematsu H, Ishii M, Arakawa T, Fushinobu S

EMDB-37863:
Cryo-EM structure of H. thermophilus GroEL-GroES bullet complex
Method: single particle / : Liao Z, Gopalasingam CC, Kameya M, Gerle C, Shigematsu H, Ishii M, Arakawa T, Fushinobu S

PDB-8wu4:
Cryo-EM structure of native H. thermoluteolus TH-1 GroEL
Method: single particle / : Liao Z, Gopalasingam CC, Kameya M, Gerle C, Shigematsu H, Ishii M, Arakawa T, Fushinobu S

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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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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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