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Showing all 36 items for (author: oubridge & c)

EMDB-4526: 
Human post-catalytic spliceosome (P complex) stalled with DHX8 S717A mutant, overall map
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4527: 
Human post-catalytic spliceosome (P complex) stalled with DHX8 K594A mutant, focused refinement on core
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai K

EMDB-4528: 
Human post-catalytic spliceosome (P complex) stalled with DHX8 S717A mutant, focused refinement on core
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4529: 
Human post-catalytic spliceosome (P complex), focused refinement on Aquarius and SYF1
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4530: 
Human post-catalytic spliceosome (P complex), focused refinement on Brr2
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4532: 
Human post-catalytic spliceosome (P complex), focused refinement on DHX8
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4533: 
Human post-catalytic spliceosome (P complex), focused refinement on Prp19
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4534: 
Human post-catalytic spliceosome (P complex), focused refinement on U2 snRNP
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4535: 
Human post-catalytic spliceosome (P complex), focused refinement on U5 Sm
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai KN

EMDB-4525: 
Human post-catalytic spliceosome (P complex) stalled with DHX8 K594A mutant, overall map
Method: single particle / : Fica SM, Oubridge C

PDB-6qdv: 
Human post-catalytic P complex spliceosome
Method: single particle / : Fica SM, Oubridge C, Wilkinson ME, Newman AJ, Nagai K

EMDB-3539: 
Structure of a spliceosome remodeled for exon ligation
Method: single particle / : Fica SM, Oubridge C

EMDB-3541: 
Structure of a spliceosome remodeled for exon ligation
Method: single particle / : Fica SM, Oubridge C

EMDB-3542: 
Structure of a spliceosome remodeled for exon ligation
Method: single particle / : Fica SM, Oubridge C, Galej WP, Wilkinson ME, Newman AJ, Bai XC, Nagai K

PDB-5mps: 
Structure of a spliceosome remodeled for exon ligation
Method: single particle / : Fica SM, Oubridge C, Galej WP, Wilkinson ME, Newman AJ, Bai XC, Nagai K

PDB-5mq0: 
Structure of a spliceosome remodeled for exon ligation
Method: single particle / : Fica SM, Oubridge C, Galej WP, Wilkinson ME, Newman AJ, Bai XC, Nagai K

EMDB-4057: 
Structure of the yeast spliceosome immediately after branching. 3D class containing helicase module.
Method: single particle / : Galej WP, Wilkinson MF

PDB-5lj5: 
Overall structure of the yeast spliceosome immediately after branching.
Method: single particle / : Galej WP, Wilkinson MF, Fica SM, Oubridge C, Newman AJ, Nagai K

EMDB-4055: 
Overall map of the yeast spliceosome immediately after branching
Method: single particle / : Galej WP, Wilkinson MF

EMDB-4056: 
Structure of the yeast spliceosome immediately after branching. 3D class containing Prp19 module.
Method: single particle / : Galej WP, Wilkinson MF, Fica SM, Oubridge C, Newman AJ, Nagai K

EMDB-4058: 
Structure of the yeast spliceosome immediately after branching. Core without WD40 domain.
Method: single particle / : Galej WP, Wilkinson MF, Fica SM, Oubridge C, Newman AJ, Nagai K

EMDB-4059: 
Structure of the yeast spliceosome immediately after branching. Core with WD40 domain.
Method: single particle / : Galej WP, Wilkinson MF, Fica SM, Oubridge C, Newman AJ, Nagai K

PDB-5lj3: 
Structure of the core of the yeast spliceosome immediately after branching
Method: single particle / : Galej WP, Wilkinson MF, Fica SM, Oubridge C, Newman AJ, Nagai K

EMDB-8006: 
The open state of the yeast U4/U6.U5 tri-snRNP at 4.2 Angstrom
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Newman AJ, Scheres SHW, Nagai K

EMDB-8007: 
The closed state of the yeast spliceosomal U4/U6.U5 tri-snRNP at 4.3 Angstrom
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Newman AJ, Scheres SHW, Nagai K

EMDB-8008: 
Combined Body and arm regions of the yeast spliceosomal U4/U6.U5 tri-snRNP by masked classification and refinement-Class 1
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Newman AJ, Scheres SHW, Nagai K

EMDB-8009: 
Combined Body and arm regions of the yeast spliceosomal U4/U6.U5 tri-snRNP by masked classification and refinement-Class 2
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Newman AJ, Scheres SHW, Nagai K

EMDB-8010: 
Combined Body and arm regions of the yeast spliceosomal U4/U6.U5 tri-snRNP by masked classification and refinement-Class 3
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Newman AJ, Scheres SHW, Nagai K

EMDB-8011: 
Foot region of the yeast spliceosomal U4/U6.U5 tri-snRNP
Method: single particle / : Nguyen THD, Galej WP

PDB-5gam: 
Foot region of the yeast spliceosomal U4/U6.U5 tri-snRNP
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Scheres SHW, Newman AJ, Nagai K

EMDB-8012: 
The overall structure of the yeast spliceosomal U4/U6.U5 tri-snRNP at 3.7 Angstrom
Method: single particle / : Nguyen THD, Galej WP

EMDB-8013: 
Head region of the yeast spliceosomal U4/U6.U5 tri-snRNP
Method: single particle / : Nguyen THD, Galej WP

EMDB-8014: 
Body region of the U4/U6.U5 tri-snRNP
Method: single particle / : Nguyen THD, Galej WP

PDB-5gan: 
The overall structure of the yeast spliceosomal U4/U6.U5 tri-snRNP at 3.7 Angstrom
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Scheres SHW, Newman AJ, Nagai K

PDB-5gao: 
Head region of the yeast spliceosomal U4/U6.U5 tri-snRNP
Method: single particle / : Nguyen THD, Galej WP, Bai XC, Oubridge C, Scheres SHW, Newman AJ, Nagai K

PDB-5gap: 
Body region of the U4/U6.U5 tri-snRNP
Method: single particle / : Nguyen THD, Galej WP, Oubridge C, Bai XC, Newman A, Scheres S, Nagai K
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