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Showing 1 - 50 of 78 items for (author: d. & boehringer)

PDB-9ftt:
Cryo-EM structure of the type 1 pilus rod as part of the FimA-bound usher complex (FimDHGFAnC)
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fw9:
Cryo-EM structure of the type 1 pilus assembly platform as part of the FimA-bound chaperone-usher pilus complex (FimDHGFAnC - body 2)
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fwb:
Cryo-EM structure of the type 1 pilus assembly platform as part of the FimA-bound chaperone-usher pilus complex (Local refinement including FimD, FimC, FimAn and FimAn-1)
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fx0:
Cryo-EM structure of the type 1 pilus tip-to-rod transition
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fx8:
Cryo-EM structure of the FimI-bound type 1 pilus assembly platform complex - Local refinement
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fxa:
Cryo-EM structure of the type 1 pilus rod as part of the FimI-bound usher complex (FimDHGFAnIC - body 1)
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fxb:
Cryo-EM structure of the type 1 pilus assembly platform as part of the FimI-bound chaperone-usher pilus complex (FimDHGFAnIC - body 2)
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fxs:
Cryo-EM structure of the type 1 pilus complex including pilus rod and FimI-bound assembly platform after incorporation of two FimI subunits - Local refinement
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fy9:
Cryo-EM structure of the type 1 chaperone-usher pilus FimD-tip complex (FimDHGFC) - Conformer 1
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-9fwz:
Cryo-EM structure of the type 1 pilus assembly platform as part of the FimA-bound chaperone-usher pilus complex (Local refinement including FimD, FimC, FimAn, FimAn-1 and FimAn-2)
Method: single particle / : Bachmann P, Afanasyev P, Boehringer D, Glockshuber R

PDB-8rgx:
Cryo-EM structure of the Bacterial Proteasome Activator Bpa of Mycobacterium tuberculosis
Method: single particle / : Zdanowicz R, von Rosen T, Afanasyev P, Boehringer D, Glockshuber R, Weber-Ban E

PDB-9fnd:
Transcriptional activator PafBC bound to mycobacterial RNA polymerase
Method: single particle / : Zdanowicz R, Schilling CM, Rabl J, Mueller AU, Boehringer D, Glockshuber R, Weber-Ban E

PDB-9fne:
Mycobacterial PafBC-bound transcription initiation complex
Method: single particle / : Zdanowicz R, Schilling CM, Rabl J, Mueller AU, Boehringer D, Glockshuber R, Weber-Ban E

PDB-8rdy:
Saccharomyces cerevisiae Prp43 helicase in complex with Pxr1
Method: single particle / : Rabl J, Portugal Calisto D, Panse VG

PDB-8piu:
60-meric complex of dihydrolipoamide acetyltransferase (E2) of the human pyruvate dehydrogenase complex
Method: single particle / : Zdanowicz R, Afanasyev P, Boehringer D, Glockshuber R

PDB-8pfr:
Mouse RPL39L integrated into the yeast 60S ribosomal subunit
Method: single particle / : Rabl J, Banerjee A, Boehringer D, Zavolan M

PDB-8p8m:
Yeast 60S ribosomal subunit, RPL39 deletion
Method: single particle / : Rabl J, Banerjee A, Boehringer D, Zavolan M

PDB-8p8n:
Mouse RPL39 integrated into the yeast 60S ribosomal subunit
Method: single particle / : Rabl J, Banerjee A, Boehringer D, Zavolan M

PDB-8p8u:
Yeast 60S ribosomal subunit
Method: single particle / : Rabl J, Banerjee A, Boehringer D, Zavolan M

PDB-8aac:
African cichlid nackednavirus capsid at pH 7.5
Method: single particle / : Pfister S, Rabl J, Boehringer D, Meier BH

PDB-8c0o:
African cichlid nackednavirus capsid at pH 5.5
Method: single particle / : Pfister S, Rabl J, Boehringer D, Meier BH

PDB-7pub:
Late assembly intermediate of the Trypanosoma brucei mitoribosomal small subunit
Method: single particle / : Lenarcic T, Leibundgut M, Saurer M, Ramrath DJF, Fluegel T, Boehringer D, Ban N

PDB-7pua:
Middle assembly intermediate of the Trypanosoma brucei mitoribosomal small subunit
Method: single particle / : Lenarcic T, Leibundgut M, Saurer M, Ramrath DJF, Fluegel T, Boehringer D, Ban N

PDB-7o5h:
Ribosomal methyltransferase KsgA bound to small ribosomal subunit
Method: single particle / : Stephan NC, Ries AB, Boehringer D, Ban N

PDB-7asd:
Structure of native royal jelly filaments
Method: helical / : Mattei S, Ban A, Picenoni A, Leibundgut M, Glockshuber R, Boehringer D

PDB-6zwm:
cryo-EM structure of human mTOR complex 2, overall refinement
Method: single particle / : Scaiola A, Mangia F, Imseng S, Boehringer D, Ban N, Maier T

PDB-6zwo:
cryo-EM structure of human mTOR complex 2, focused on one half
Method: single particle / : Scaiola A, Mangia F, Imseng S, Boehringer D, Ban N, Maier T

PDB-6yxx:
State A of the Trypanosoma brucei mitoribosomal large subunit assembly intermediate
Method: single particle / : Jaskolowski M, Ramrath DJF, Bieri P, Niemann M, Mattei S, Calderaro S, Leibundgut MA, Horn EK, Boehringer D, Schneider A, Ban N

PDB-6yxy:
State B of the Trypanosoma brucei mitoribosomal large subunit assembly intermediate
Method: single particle / : Jaskolowski M, Ramrath DJF, Bieri P, Niemann M, Mattei S, Calderaro S, Leibundgut MA, Horn EK, Boehringer D, Schneider A, Ban N

PDB-6zs5:
3.5 A cryo-EM structure of human uromodulin filament core
Method: single particle / : Stanisich JJ, Zyla D, Afanasyev P, Xu J, Pilhofer M, Boeringer D, Glockshuber R

PDB-6zya:
Extended human uromodulin filament core at 3.5 A resolution
Method: single particle / : Stanisich JJ, Zyla D, Afanasyev P, Xu J, Pilhofer M, Boeringer D, Glockshuber R

PDB-6sgb:
mt-SSU assemblosome of Trypanosoma brucei
Method: single particle / : Saurer M, Ramrath DJF, Niemann M, Calderaro S, Prange C, Mattei S, Scaiola A, Leitner A, Bieri P, Horn EK, Leibundgut M, Boehringer D, Schneider A, Ban N

PDB-6sg9:
Head domain of the mt-SSU assemblosome from Trypanosoma brucei
Method: single particle / : Saurer M, Ramrath DJF, Niemann M, Calderaro S, Prange C, Mattei S, Scaiola A, Leitner A, Bieri P, Horn EK, Leibundgut M, Boehringer D, Schneider A, Ban N

PDB-6sga:
Body domain of the mt-SSU assemblosome from Trypanosoma brucei
Method: single particle / : Saurer M, Ramrath DJF, Niemann M, Calderaro S, Prange C, Mattei S, Scaiola A, Leitner A, Bieri P, Horn EK, Leibundgut M, Boehringer D, Schneider A, Ban N

PDB-6qul:
Structure of a bacterial 50S ribosomal subunit in complex with the novel quinoxolidinone antibiotic cadazolid
Method: single particle / : Scaiola A, Leibundgut M, Boehringer D, Ritz D

PDB-6hiv:
Cryo-EM structure of the Trypanosoma brucei mitochondrial ribosome - This entry contains the complete mitoribosome
Method: single particle / : Ramrath DJF, Niemann M, Leibundgut M, Bieri P, Prange C, Horn EK, Leitner A, Boerhringer D, Schneider A, Ban N

PDB-6hiw:
Cryo-EM structure of the Trypanosoma brucei mitochondrial ribosome - This entry contains the complete small mitoribosomal subunit in complex with mt-IF-3
Method: single particle / : Ramrath D, Niemann M, Leibundgut M, Bieri P, Prange C, Horn EK, Leitner A, Boehringer D, Schneider A, Ban N

PDB-6hix:
Cryo-EM structure of the Trypanosoma brucei mitochondrial ribosome - This entry contains the large mitoribosomal subunit
Method: single particle / : Ramrath DJF, Niemann M, Leibundgut M, Bieri P, Prange C, Horn K, Leitner A, Boehringer D, Schneider A, Ban N

PDB-6hiy:
Cryo-EM structure of the Trypanosoma brucei mitochondrial ribosome - This entry contains the body of the small mitoribosomal subunit in complex with mt-IF-3
Method: single particle / : Ramrath DJF, Niemann M, Leibundgut M, Bieri P, Prange C, Horn EK, Leitner A, Boehringer D, Schneider A, Ban N

PDB-6hiz:
Cryo-EM structure of the Trypanosoma brucei mitochondrial ribosome - This entry contains the head of the small mitoribosomal subunit
Method: single particle / : Ramrath DJF, Niemann M, Leibundgut M, Bieri P, Prange C, Horn EK, Leitner A, Boehringer A, Schneider A, Ban N

PDB-6gaw:
Unique features of mammalian mitochondrial translation initiation revealed by cryo-EM. This file contains the complete 55S ribosome.
Method: single particle / : Kummer E, Leibundgut M, Boehringer D, Ban N

PDB-6gaz:
Unique features of mammalian mitochondrial translation initiation revealed by cryo-EM. This file contains the 28S ribosomal subunit.
Method: single particle / : Kummer E, Leibundgut M, Boehringer D, Ban N

PDB-6gb2:
Unique features of mammalian mitochondrial translation initiation revealed by cryo-EM. This file contains the 39S ribosomal subunit.
Method: single particle / : Kummer E, Leibundgut M, Boehringer D, Ban N

PDB-6fai:
Structure of a eukaryotic cytoplasmic pre-40S ribosomal subunit
Method: single particle / : Scaiola A, Pena C, Weisser M, Boehringer D, Leibundgut M, Klingauf-Nerurkar P, Gerhardy S, Panse VG, Ban N

PDB-5oa3:
Human 40S-eIF2D-re-initiation complex
Method: single particle / : Weisser M, Schaefer T, Leibundgut M, Boehringer D, Aylett CHS, Ban N

PDB-5o5j:
Structure of the 30S small ribosomal subunit from Mycobacterium smegmatis
Method: single particle / : Hentschel J, Burnside C, Mignot I, Leibundgut M, Boehringer D, Ban N

PDB-5o60:
Structure of the 50S large ribosomal subunit from Mycobacterium smegmatis
Method: single particle / : Hentschel J, Burnside C, Mignot I, Leibundgut M, Boehringer D, Ban N

PDB-5o61:
The complete structure of the Mycobacterium smegmatis 70S ribosome
Method: single particle / : Hentschel J, Burnside C, Mignot I, Leibundgut M, Boehringer D, Ban N

PDB-5nco:
Quaternary complex between SRP, SR, and SecYEG bound to the translating ribosome
Method: single particle / : Jomaa A, Hwang Fu Y, Boerhinger D, Leibundgut M, Shan SO, Ban N

PDB-5mpp:
Structure of AaLS-wt
Method: single particle / : Sasaki E, Boehringer D, Leibundgut M, Ban N, Hilvert D

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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