Found 693 chains in Genus chains table. Displaying 351 - 400. Applied filters: Proteins

Search results query: AAA

Total Genus Sequence Length pdb Title
84 391 6epcK Ground state 26s proteasome (gs2)
83 385 6epeI Substrate processing state 26s proteasome (sps2)
91 406 6epdJ Substrate processing state 26s proteasome (sps1)
95 406 6epcJ Ground state 26s proteasome (gs2)
177 790 6em9A S.aureus clpc resting state, asymmetric map
85 406 6epfJ Ground state 26s proteasome (gs1)
84 396 6epeH Substrate processing state 26s proteasome (sps2)
85 415 6epcM Ground state 26s proteasome (gs2)
80 396 6epcH Ground state 26s proteasome (gs2)
92 406 6epeJ Substrate processing state 26s proteasome (sps2)
79 389 6epcL Ground state 26s proteasome (gs2)
122 790 6em8A S.aureus clpc resting state, c2 symmetrised
80 396 6epdH Substrate processing state 26s proteasome (sps1)
92 385 6epfI Ground state 26s proteasome (gs1)
146 717 6e111 Ptex core complex in the resetting (compact) state
134 719 6e101 Ptex core complex in the engaged (extended) state
64 687 6ed3A Mtb clpb in complex with amppnp
119 687 6djvA Mtb clpb in complex with atpgammas and casein, conformer 2
109 687 6djuA Mtb clpb in complex with atpgammas and casein, conformer 1
143 569 6chsD Cdc48-npl4 complex in the presence of atp-gamma-s
104 316 6blbA 1.88 angstrom resolution crystal structure holliday junction atp-dependent dna helicase (ruvb) from pseudomonas aeruginosa in complex with adp
66 318 6bmfA Vps4p-vta1p complex with peptide binding to the central pore of vps4p
76 305 6b5dA Structural basis for katanin self-assembly
94 307 6b5cA Structural basis for katanin self-assembly
127 439 6az0A Mitochondrial atpase protease yme1
115 349 6amnA Crystal structure of hsp104 n domain
72 318 6ap1A Vps4p-vta1p complex with peptide binding to the central pore of vps4p
81 319 5xmiA Cryo-em structure of the atp-bound vps4 mutant-e233q hexamer (masked)
86 319 5xmkA Cryo-em structure of the atp-bound vps4 mutant-e233q complex with vta1 (masked)
46 267 5vhoA Conformational landscape of the p28-bound human proteasome regulatory particle
49 261 5vhrF Conformational landscape of the p28-bound human proteasome regulatory particle
57 353 5vfrA Nucleotide-driven triple-state remodeling of the aaa-atpase channel in the activated human 26s proteasome
52 265 5vhnB Conformational landscape of the p28-bound human proteasome regulatory particle
46 266 5vhnA Conformational landscape of the p28-bound human proteasome regulatory particle
57 408 5wvkH Yeast proteasome-adp-alfx
56 352 5vhsA Conformational landscape of the p28-bound human proteasome regulatory particle
62 373 5wviJ The resting state of yeast proteasome
32 236 5vhoD Conformational landscape of the p28-bound human proteasome regulatory particle
77 380 5vfpD Nucleotide-driven triple-state remodeling of the aaa-atpase channel in the activated human 26s proteasome
42 238 5vhjF Conformational landscape of the p28-bound human proteasome regulatory particle
42 237 5vhnD Conformational landscape of the p28-bound human proteasome regulatory particle
71 376 5vhhF Conformational landscape of the p28-bound human proteasome regulatory particle
69 373 5vhfE Conformational landscape of the p28-bound human proteasome regulatory particle
48 237 5vhpD Conformational landscape of the p28-bound human proteasome regulatory particle
82 392 5t0jC Structural basis for dynamic regulation of the human 26s proteasome
55 419 5wviH The resting state of yeast proteasome
71 380 5vftD Nucleotide-driven triple-state remodeling of the aaa-atpase channel in the activated human 26s proteasome
43 362 5wviI The resting state of yeast proteasome
49 266 5vhpA Conformational landscape of the p28-bound human proteasome regulatory particle
46 216 5vhpE Conformational landscape of the p28-bound human proteasome regulatory particle