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Showing 1 - 50 of 2,486 items for (author: abe & k)

EMDB-36467:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (form A)
Method: single particle / : Watanabe S, Inaba K

EMDB-36468:
Cryo-EM structures of the head region of full-length ERGIC-53 with MCFD2 (form B)
Method: single particle / : Watanabe S, Inaba K

EMDB-36469:
Cryo-EM structures of the head region of full-length ERGIC-53 with MCFD2 (Substate A)
Method: single particle / : Watanabe S, Inaba K

EMDB-36470:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (Substate B)
Method: single particle / : Watanabe S, Inaba K

EMDB-36471:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (Substate C)
Method: single particle / : Watanabe S, Inaba K

EMDB-36472:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (Substate D)
Method: single particle / : Watanabe S, Inaba K

EMDB-36479:
Cryo-EM structure of full-length ERGIC-53 with MCFD2
Method: single particle / : Watanabe S, Inaba K

EMDB-36482:
cryoEM structure of ERGIC-53 deltaH34 mutant with MCFD2
Method: single particle / : Watanabe S, Inaba K

PDB-8jp4:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (form A)
Method: single particle / : Watanabe S, Inaba K

PDB-8jp5:
Cryo-EM structures of the head region of full-length ERGIC-53 with MCFD2 (form B)
Method: single particle / : Watanabe S, Inaba K

PDB-8jp6:
Cryo-EM structures of the head region of full-length ERGIC-53 with MCFD2 (Substate A)
Method: single particle / : Watanabe S, Inaba K

PDB-8jp7:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (Substate B)
Method: single particle / : Watanabe S, Inaba K

PDB-8jp8:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (Substate C)
Method: single particle / : Watanabe S, Inaba K

PDB-8jp9:
Cryo-EM structure of the head region of full-length ERGIC-53 with MCFD2 (Substate D)
Method: single particle / : Watanabe S, Inaba K

PDB-8jpg:
Cryo-EM structure of full-length ERGIC-53 with MCFD2
Method: single particle / : Watanabe S, Inaba K

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-43008:
Fab fragment of human mAb #58 in complex with computationally optimized broadly reactive H1 influenza hemagglutinin X6
Method: single particle / : Nagashima KA, Mousa JJ

EMDB-41105:
CryoEM structure of human DDB1-DCAF12 in complex with MAGEA3
Method: single particle / : Duda D, Righetto G, Li Y, Loppnau P, Seitova A, Santhakumar V, Halabelian L, Yin Y

PDB-8t9a:
CryoEM structure of human DDB1-DCAF12 in complex with MAGEA3
Method: single particle / : Duda D, Righetto G, Li Y, Loppnau P, Seitova A, Santhakumar V, Halabelian L, Yin Y

EMDB-39292:
5-fold block of DNA-Full medusavirus capsid
Method: single particle / : Murata K, Song C, Watanabe R

EMDB-39293:
5-fold block of DNA-Empty medusavirus capsid with internal membrane
Method: single particle / : Murata K, Song C, Watanabe R

EMDB-39294:
5-fold block of DNA-Empty medusavirus capsid without internal membrane
Method: single particle / : Murata K, Song C, Watanabe R

EMDB-39295:
3-fold block of DNA-Full medusavirus capsid
Method: single particle / : Murata K, Song C, Watanabe R

EMDB-39296:
3-fold block of DNA-Empty medusavirus capsid
Method: single particle / : Murata K, Song C, Watanabe R

EMDB-39297:
2-fold block of DNA-Full medusavirus capsid
Method: single particle / : Murata K, Song C, Watanabe R

EMDB-39298:
2-fold block of DNA-Empty medusavirus capsid
Method: single particle / : Murata K, Song C, Watanabe R

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-40799:
Cryo-EM consensus map of a double loaded human UBA7-UBE2L6-ISG15 thioester mimetic complex
Method: single particle / : Afsar M, Jia L, Ruben EA, Olsen SK

EMDB-18807:
SD1-2 fab in complex with SARS-COV-2 BA.12.1 Spike Glycoprotein.
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI

EMDB-18808:
SD1-3 Fab in complex with SARS-CoV-2 BA.2.12.1 Spike Glycoprotein
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI

PDB-8r1c:
SD1-2 Fab in complex with SARS-CoV-2 BA.2.12.1 Spike Glycoprotein
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI

PDB-8r1d:
SD1-3 Fab in complex with SARS-CoV-2 BA.2.12.1 Spike Glycoprotein
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI

EMDB-16916:
Bipartite interaction of TOPBP1 with the GINS complex
Method: single particle / : Day M, Oliver AW, Pearl LH

PDB-8ok2:
Bipartite interaction of TOPBP1 with the GINS complex
Method: single particle / : Day M, Oliver AW, Pearl LH

EMDB-29370:
LBD conformation 1 (LBDconf1) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma-2, with 500mM NaCl, 330uM CTZ, and 100mM glutamate (Open-Na610)
Method: single particle / : Nakagawa T

EMDB-29371:
LBD conformation 2 (LBDconf2) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma-2, with 500mM NaCl, 330uM CTZ, and 100mM glutamate (Open-Na610)
Method: single particle / : Nakagawa T

EMDB-29372:
LBD conformation 3 (LBDconf3) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma-2, with 500mM NaCl, 330uM CTZ, and 100mM glutamate (Open-Na610)
Method: single particle / : Nakagawa T

EMDB-29381:
LBD conformation 2 (LBDconf2) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma2, with 140mM NMDG, 330uM CTZ, and 100mM L-glutamate (Open-Na110)
Method: single particle / : Nakagawa T

PDB-8fpv:
LBD conformation 1 (LBDconf1) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma-2, with 500mM NaCl, 330uM CTZ, and 100mM glutamate (Open-Na610)
Method: single particle / : Nakagawa T

PDB-8fpy:
LBD conformation 2 (LBDconf2) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma-2, with 500mM NaCl, 330uM CTZ, and 100mM glutamate (Open-Na610)
Method: single particle / : Nakagawa T

PDB-8fpz:
LBD conformation 3 (LBDconf3) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma-2, with 500mM NaCl, 330uM CTZ, and 100mM glutamate (Open-Na610)
Method: single particle / : Nakagawa T

PDB-8fqa:
LBD conformation 2 (LBDconf2) of GluA2 flip Q isoform of AMPA receptor in complex with gain-of-function TARP gamma2, with 140mM NMDG, 330uM CTZ, and 100mM L-glutamate (Open-Na110)
Method: single particle / : Nakagawa T

EMDB-42681:
The structure of the native cardiac thin filament troponin core in Ca2+-free state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42682:
The structure of the native cardiac thin filament troponin core in Ca2+-free tilted state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42683:
The structure of the native cardiac thin filament troponin core in Ca2+-free rotated state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42800:
The structure of the native cardiac thin filament troponin core in Ca2+-free state from the lower strand
Method: single particle / : Galkin VE, Risi CM

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Nobel Prize for mechanically activated and temperature-gated ion channels

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