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Showing all 30 items for (author: reif & d)
EMDB-25702:
Flagellar motor of Hylemonella gracilis
Method: subtomogram averaging / : Kaplan M, Oikonomou CM, Wood CR, Chreifi G, Subramanian P, Ortega DR, Chang YW, Beeby M, Shaffer LS, Jensen GJ
EMDB-25703:
Flagellar MS-complex of Helicobacter pylori delta fliM fliP*
Method: subtomogram averaging / : Kaplan M, Oikonomou CM, Wood CR, Chreifi G, Subramanian P, Ortega DR, Chang YW, Beeby M, Shaffer LS, Jensen GJ
EMDB-25704:
Flagellar MS-complex of Helicobacter pylori fliP*
Method: subtomogram averaging / : Kaplan M, Oikonomou CM, Wood CR, Chreifi G, Subramanian P, Ortega DR, Chang YW, Beeby M, Shaffer LS, Jensen GJ
EMDB-25705:
Flagellar MS-complex of Helicobacter pylori delta fliQ fliP*
Method: subtomogram averaging / : Kaplan M, Oikonomou CM, Wood CR, Chreifi G, Subramanian P, Ortega DR, Chang YW, Beeby M, Shaffer LS, Jensen GJ
EMDB-12766:
Single particle cryo-EM reconstruction of just the top two rings of a 40-mer assembly of recombinant yeast Hsp26 S207E mutant.
Method: single particle / : Muehlhofer M, Peters C, Kriehuber T, Kreuzeder M, Kazman P, Rodina N, Reif B, Haslbeck M, Weinkauf S, Buchner J
EMDB-12771:
Single particle cryo-EM reconstruction of a 40-mer assembly of recombinant yeast Hsp26 S207E mutant.
Method: single particle / : Muehlhofer M, Peters C, Kriehuber T, Kreuzeder M, Kazman P, Rodina N, Reif B, Haslbeck M, Weinkauf S, Buchner J
EMDB-12772:
Single particle cryo-EM reconstruction of a 40-mer assembly of recombinant yeast Hsp26 mutant S47ET48E.
Method: single particle / : Muehlhofer M, Peters C, Kriehuber T, Kreuzeder M, Kazman P, Rodina N, Reif B, Haslbeck M, Weinkauf S, Buchner J
EMDB-12773:
Single particle cryo-EM reconstruction of a 40-mer assembly of recombinant yeast Hsp26.
Method: single particle / : Muehlhofer M, Peters C, Kriehuber T, Kreuzeder M, Kazman P, Rodina N, Reif B, Haslbeck M, Weinkauf S, Buchner J
EMDB-13748:
Preliminary Single particle cryo-EM reconstruction of a 40-mer assembly of Hsp26 purified from yeast.
Method: single particle / : Peters C, Weinkauf S, Buchner J
PDB-7oa6:
Pseudo-atomic model for Hsp26 residues 63 to 214. Please be advised that the target map is not of sufficient resolution to unambiguously position backbone or side chain atoms. This model represents a likely fit.
Method: single particle / : Muehlhofer M, Peters C, Kriehuber T, Kreuzeder M, Kazman P, Rodina N, Reif B, Haslbeck M, Weinkauf S, Buchner J
EMDB-4894:
Single particle cryo-EM reconstruction of a 16-mer assembly of reduced recombinant human alphaA-crystallin.
Method: single particle / : Peters C, Kaiser CJO, Buchner J, Weinkauf S
EMDB-4895:
Single particle cryo-EM reconstruction of a 12-mer assembly of reduced recombinant human alphaA-crystallin.
Method: single particle / : Peters C, Kaiser CJO, Buchner J, Weinkauf S
EMDB-4896:
Single particle cryo-EM reconstruction of a 20-mer assembly of reduced recombinant human alphaA-crystallin.
Method: single particle / : Peters C, Kaiser CJO, Buchner J, Weinkauf S
PDB-6t1r:
Pseudo-atomic model of a 16-mer assembly of reduced recombinant human alphaA-crystallin (non domain swapped configuration)
Method: single particle / : Peters C, Kaiser CJO, Weinkauf S, Zacharias M, Buchner J
EMDB-9260:
Electron cryotomogram of Bdellovibrio bacteriovorus acquired by fast-incremental method
Method: electron tomography / : Chreifi G, Chen S, Metskas LA, Kaplan M, Jensen GJ
EMDB-9261:
Electron cryotomogram of Bdellovibrio bacteriovorus acquired by continuous tilting
Method: electron tomography / : Chreifi G, Chen S, Metskas LA, Kaplan M, Jensen GJ
EMDB-3986:
Morphology II - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3987:
Morphology III - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3988:
Morphology IV - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3989:
Morphology V - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3990:
Morphology VI - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3991:
Morphology VII - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3992:
Morphology VIII - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3993:
Morphology IX - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-3994:
Morphology X - cross-beta amyloid fibril structure from the IGSNVVTWYQQL peptide of AL immunoglobulin light chain by cryo-EM
Method: helical / : Close W, Faendrich M
EMDB-7337:
Cryo-EM structure of PRC2 bound to cofactors AEBP2 and JARID2 in the Extended Basal state
Method: single particle / : Kasinath V, Faini M, Poepsel S, Reif D, Feng A, Stjepanovic G, Aebersold R, Nogales E
EMDB-7334:
Cryo-EM structure of PRC2 bound to cofactors AEBP2 and JARID2 in the Compact Active State
Method: single particle / : Kasinath V, Faini M, Poepsel S, Reif D, Feng A, Stjepanovic G, Aebersold R, Nogales E
EMDB-7335:
Cryo-EM structure of PRC2 bound to cofactors AEBP2 and JARID2 in the Extended Active State
Method: single particle / : Kasinath V, Faini M, Poepsel S, Reif D, Feng A, Stjepanovic G, Aebersold R, Nogales E
PDB-6c23:
Cryo-EM structure of PRC2 bound to cofactors AEBP2 and JARID2 in the Compact Active State
Method: single particle / : Kasinath V, Faini M, Poepsel S, Reif D, Feng A, Stjepanovic G, Aebersold R, Nogales E
PDB-6c24:
Cryo-EM structure of PRC2 bound to cofactors AEBP2 and JARID2 in the Extended Active State
Method: single particle / : Kasinath V, Faini M, Poepsel S, Reif D, Feng A, Stjepanovic G, Aebersold R, Nogales E