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Showing 1 - 50 of 2,544 items for (author: gui & l)

EMDB-70376: 
The structure of a Bacterial Cyanide Dihydratase from Bacillus safensis PER-URP-08
Method: single particle / : Justo Arevalo S, Valle-Riestra F V, Balan A, Chuck CS

EMDB-70421: 
The structure of a Fungal Cyanide Hydratase from Gloeocercospora sorghi
Method: single particle / : Justo Arevalo S, Valle-Riestra F V, Balan A, Farah CS

PDB-9odt: 
The structure of a Bacterial Cyanide Dihydratase from Bacillus safensis PER-URP-08
Method: single particle / : Justo Arevalo S, Valle-Riestra F V, Balan A, Chuck CS

PDB-9ofa: 
The structure of a Fungal Cyanide Hydratase from Gloeocercospora sorghi
Method: single particle / : Justo Arevalo S, Valle-Riestra F V, Balan A, Farah CS

EMDB-54931: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54932: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54943: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54944: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54946: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54948: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sit: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9siu: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjc: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjd: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjl: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjn: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in outwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-53311: 
Cryo-EM map of SKM-70S ribosomal stalled complex in the major state (vacant A-site, canon)
Method: single particle / : Morici M, Corazza M, Safdari HA, Wilson DN

EMDB-53341: 
Cryo-EM structure of SKM-70S ribosomal stalled complex in the A-tRNA positioned (Body open) state.
Method: single particle / : Morici M, Corazza M, Safdari HA, Wilson DN

EMDB-55145: 
Cryo-EM structure of SKM-70S ribosomal stalled complex in the rotated state with hybrid tRNAs
Method: single particle / : Morici M, Corazza M, Safdari HA, Wilson DN

PDB-9qqq: 
Cryo-EM structure of SKM-70S ribosomal stalled complex in the major state (vacant A-site, canon)
Method: single particle / : Morici M, Corazza M, Safdari HA, Wilson DN

PDB-9qsj: 
Cryo-EM structure of SKM-70S ribosomal stalled complex in the A-tRNA positioned (Body open) state.
Method: single particle / : Morici M, Corazza M, Safdari HA, Wilson DN

PDB-9sro: 
Cryo-EM structure of SKM-70S ribosomal stalled complex in the rotated state with hybrid tRNAs
Method: single particle / : Morici M, Corazza M, Safdari HA, Wilson DN

EMDB-49520: 
Focused refinement of the prefusion F glycoprotein ectodomain of Nipah virus in complex with DS90 nanobody
Method: single particle / : Low YS, Isaacs A, Modhiran N, Watterson D

EMDB-54919: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54947: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54949: 
Type I-F_HNH variant Cascade RNP bound to dsDNA with trace of target strand into HNH domain rotated in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-54950: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

PDB-9shx: 
Type I-F_HNH variant Cascade bound to dsDNA, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjm: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in inwards position
Method: single particle / : Fuglsang A, Montoya G

PDB-9sjo: 
Type I-F_HNH variant Cascade target-free RNP, HNH domain in middle position
Method: single particle / : Fuglsang A, Montoya G

EMDB-47503: 
Human ASIC1a at pH 8.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47504: 
Human ASIC1a at pH 7.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47505: 
Human ASIC1a at pH 7.5 with partial transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47506: 
Human ASIC1a at pH 7.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47507: 
Human ASIC1a at pH 6.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47508: 
Human ASIC1a at pH 5.7 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47509: 
Human ASIC1a at pH 5.7 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47510: 
Human ASIC1a at pH 5.7 with rotated, domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47511: 
Human ASIC1a at pH 7.5 in complex with MitTx
Method: single particle / : Hartfield KA, Yoshioka C, Cahill J, Baconguis I

EMDB-47512: 
Human ASIC1a at pH 6.5 in complex with MitTx
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47513: 
Human ASIC1a at pH 8.5, T26V mutation
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4a: 
Human ASIC1a at pH 8.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4b: 
Human ASIC1a at pH 7.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4c: 
Human ASIC1a at pH 7.5 with partial transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4d: 
Human ASIC1a at pH 7.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4e: 
Human ASIC1a at pH 6.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4f: 
Human ASIC1a at pH 5.7 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4g: 
Human ASIC1a at pH 5.7 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4h: 
Human ASIC1a at pH 5.7 with rotated, domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4i: 
Human ASIC1a at pH 7.5 in complex with MitTx
Method: single particle / : Hartfield KA, Yoshioka C, Cahill J, Baconguis I
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