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Showing 1 - 50 of 772 items for (author: schul & w)

EMDB-48622: 
Structure of a native Drosophila melanogaster Pol II Elongation Complex with a well-defined Rpb4/Rpb7 stalk
Method: single particle / : Venette-Smith NL, Vishwakarma RK, Dollinger R, Schultz J, Venkatakrishnan V, Babitzke P, Anand G, Gilmour DS, Armache JP, Murakami K

PDB-9mu7: 
Structure of a native Drosophila melanogaster Pol II Elongation Complex with a well-defined Rpb4/Rpb7 stalk
Method: single particle / : Venette-Smith NL, Vishwakarma RK, Dollinger R, Schultz J, Venkatakrishnan V, Babitzke P, Anand G, Gilmour DS, Armache JP, Murakami K

EMDB-53097: 
Structure of the GH13 domain of Ruminococcus bromii Amy4
Method: single particle / : Wimmer BH, Medalia O

EMDB-53101: 
Structure of the GH13 and MucBP domains of Ruminococcus bromii Amy10
Method: single particle / : Wimmer BH, Medalia O

EMDB-53102: 
Structure of the GH13 domain of Ruminococcus bromii Amy16
Method: single particle / : Wimmer BH, Medalia O

EMDB-53103: 
Structure of the GH13 and MucBP domains of Ruminococcus bromii Amy12
Method: single particle / : Wimmer BH, Medalia O

EMDB-53104: 
Ruminococcus bromii ribosome
Method: subtomogram averaging / : Wimmer BH, Medalia O

PDB-9qf3: 
Structure of the GH13 domain of Ruminococcus bromii Amy4
Method: single particle / : Wimmer BH, Medalia O

PDB-9qf8: 
Structure of the GH13 and MucBP domains of Ruminococcus bromii Amy10
Method: single particle / : Wimmer BH, Medalia O

PDB-9qf9: 
Structure of the GH13 domain of Ruminococcus bromii Amy16
Method: single particle / : Wimmer BH, Medalia O

PDB-9qfa: 
Structure of the GH13 and MucBP domains of Ruminococcus bromii Amy12
Method: single particle / : Wimmer BH, Medalia O

EMDB-72194: 
Cryo-EM Structure of the Class II Cyclase Domain in the Bifunctional Copalyl Diphosphate Synthase from Penicillium verruculosum
Method: single particle / : Gaynes MN, Christianson DW

PDB-9q3i: 
Cryo-EM Structure of the Class II Cyclase Domain in the Bifunctional Copalyl Diphosphate Synthase from Penicillium verruculosum
Method: single particle / : Gaynes MN, Christianson DW

EMDB-51504: 
Cryo-EM map of pentameric Sr35 assembly in 5:5 complex with AvrSr35
Method: single particle / : Macha A, Gunkel M, Lawson AW, Behrmann E, Schulze-Lefert P

EMDB-51505: 
AvrSr35-focussed cryo-EM map of pentameric Sr35 assembly in 5:5 complex with AvrSr35
Method: single particle / : Macha A, Gunkel M, Lawson AW, Behrmann E, Schulze-Lefert P

EMDB-51507: 
Cryo-EM map of dimeric AvrSr35
Method: single particle / : Macha A, Gunkel M, Lawson AW, Schulze-Lefert P, Behrmann E

PDB-9gqn: 
Cryo-EM map of dimeric AvrSr35
Method: single particle / : Macha A, Gunkel M, Lawson AW, Schulze-Lefert P, Behrmann E

EMDB-50114: 
The molecular basis and modulation of lamin-specific chromatin interaction
Method: single particle / : Wang B, Luo Q

EMDB-50291: 
The molecular basis and modulation of lamin-specific chromatin interactions
Method: single particle / : Wang B, Luo Q

EMDB-52630: 
MEF in-situ nucleosome consensus structure
Method: subtomogram averaging / : Eibauer M, Medalia O

EMDB-52633: 
MEF in-situ nucleosome canonical structure
Method: subtomogram averaging / : Eibauer M, Medalia O

PDB-9f0o: 
The molecular basis and modulation of lamin-specific chromatin interaction
Method: single particle / : Wang B, Luo Q

EMDB-51544: 
Cryo-EM structure of mouse PMCA-NPTN complex captured in E2 state (BEF3)
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

EMDB-51545: 
Cryo-EM structure of mouse PMCA-NPTN complex captured in E1 state without calcium
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

EMDB-51546: 
Mouse PMCA-NPTN complex captured in E1-ATP state without calcium
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

EMDB-51547: 
Cryo-EM structure of mouse PMCA-NPTN complex captured in E2-Pi state (ALF4)
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

EMDB-51548: 
Cryo-EM structure of PMCA-NPTN complex captured in E1-Ca-ATP state
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

EMDB-51549: 
Cryo-EM structure of mouse PMCA captured in E1-ATP in the presence of Calcium
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

EMDB-51558: 
Cryo-EM structure of mouse PMCA captured in E2-P state (BEF3)
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

EMDB-51560: 
Cryo-EM structure of Mouse PMCA-NPTN complex captured in E1-Ca state
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Shulte U, Constantin CE, Prubaum D, Zolles G, Fakler B

EMDB-51625: 
Cryo-EM map of the complete PMCA-NPTN complex captured in E1-Ca state
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Shulte U, Constantin CE, Prubaum D, Zolles G, Fakler B

PDB-9gsd: 
Cryo-EM structure of mouse PMCA-NPTN complex captured in E2 state (BEF3)
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

PDB-9gse: 
Cryo-EM structure of mouse PMCA-NPTN complex captured in E1 state without calcium
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

PDB-9gsf: 
Mouse PMCA-NPTN complex captured in E1-ATP state without calcium
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

PDB-9gsg: 
Cryo-EM structure of mouse PMCA-NPTN complex captured in E2-Pi state (ALF4)
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

PDB-9gsh: 
Cryo-EM structure of PMCA-NPTN complex captured in E1-Ca-ATP state
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

PDB-9gsi: 
Cryo-EM structure of mouse PMCA captured in E1-ATP in the presence of Calcium
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

PDB-9gsy: 
Cryo-EM structure of mouse PMCA captured in E2-P state (BEF3)
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Schulte U, Constantin CE, Prumbaum D, Zolles G, Fakler B

PDB-9gtb: 
Cryo-EM structure of Mouse PMCA-NPTN complex captured in E1-Ca state
Method: single particle / : Vinayagam D, Raunser S, Sistel O, Shulte U, Constantin CE, Prubaum D, Zolles G, Fakler B

EMDB-52446: 
RSV-F postfusion trimer with no 131-2a bound
Method: single particle / : Snijder J

EMDB-52447: 
RSV-F postfusion trimer with one 131-2a Fab bound
Method: single particle / : Snijder J

EMDB-52448: 
RSV-F postfusion trimer with two 131-2a Fabs bound
Method: single particle / : Snijder J

EMDB-51901: 
SARS-CoV-2 S protein in complex with pT1679 Fab
Method: single particle / : Hansen G, Benecke T, Vollmer B, Gruenewald K, Krey T

PDB-9h6u: 
SARS-CoV-2 S protein in complex with pT1679 Fab
Method: single particle / : Hansen G, Benecke T, Vollmer B, Gruenewald K, Krey T

EMDB-47022: 
CryoEM structure of the Strongylocentrotus purpuratus caveolin complex
Method: single particle / : Connolly SM, Ohi MD

EMDB-47023: 
CryoEM structure of the Salpingoeca rosetta caveolin complex
Method: single particle / : Connolly SM, Ohi MD

PDB-9dn0: 
CryoEM structure of the Strongylocentrotus purpuratus caveolin complex
Method: single particle / : Connolly SM, Ohi MD

PDB-9dn1: 
CryoEM structure of the Salpingoeca rosetta caveolin complex
Method: single particle / : Connolly SM, Ohi MD

EMDB-50336: 
Cryo-EM structure of the ternary DARPin NY_1/HLA-A0201/NY-ESO1 complex.
Method: single particle / : Schulte T, Wallden K, Carroni M, Sandalova T, Walser M, Mueller S, Venetz N, Achour A

PDB-9fe1: 
Cryo-EM structure of the ternary DARPin NY_1/HLA-A0201/NY-ESO1 complex.
Method: single particle / : Schulte T, Wallden K, Carroni M, Sandalova T, Walser M, Mueller S, Venetz N, Achour A
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