Found 4530 chains in Genus chains table. Displaying 251 - 300. Applied filters: Proteins

Search results query: protein binding

Total Genus Sequence Length pdb Title
14 69 9hizR Complex of the nanofitin sac7d-c3(c24a) with a human igg1 fc fragment
26 119 9hgcA Crystal structure of human gabarapl1 in complex with cyclic peptide gab_d8
37 119 9hgdA Crystal structure of human gabarap in complex with cyclic peptide gab_d23
41 209 9hizA Complex of the nanofitin sac7d-c3(c24a) with a human igg1 fc fragment
1 15 9hgcB Crystal structure of human gabarapl1 in complex with cyclic peptide gab_d8
27 111 9h6uL Sars-cov-2 s protein in complex with pt1679 fab
31 128 9h6uH Sars-cov-2 s protein in complex with pt1679 fab
45 195 9h6uA Sars-cov-2 s protein in complex with pt1679 fab
39 218 9gjvH Fab fragment of an antibody that recognises alpha-1 antitrypsin
46 214 9gjvL Fab fragment of an antibody that recognises alpha-1 antitrypsin
0 9 9gg7C Crystal structure of 14-3-3 sigma dc - c38n in complex with tau ps324 peptide and covalent stabilizer 187
100 236 9ggaA Crystal structure of 14-3-3 sigma in complex with tau ps214 peptide and covalent stabilizer fm089
99 236 9gg7A Crystal structure of 14-3-3 sigma dc - c38n in complex with tau ps324 peptide and covalent stabilizer 187
101 236 9gg8A Crystal structure of 14-3-3 sigma dc - c38n in complex with tau ps214 peptide and covalent stabilizer 187
73 259 9gajA X-ray structure of hca(ii)/aromatic foldamer complex
73 257 9gamA X-ray structure of hca(ii)/aromatic foldamer complex
74 257 9gakA X-ray structure of hca(ii)/aromatic foldamer complex
100 236 9fvnA Crystal structure of 14-3-3 sigma in complex with tau ps214 peptide and covalent stabilizer nz4
100 236 9fvgA Crystal structure of 14-3-3 sigma in complex with tau ps214 peptide and covalent stabilizer ao184
100 236 9fviA Crystal structure of 14-3-3 sigma in complex with tau ps214 peptide and covalent stabilizer js18
101 236 9fvhA Crystal structure of 14-3-3 sigma in complex with tau ps214 peptide and covalent stabilizer js17
99 236 9fs4A Crystal structure of 14-3-3 sigma in complex with tau ps214 peptide and covalent stabilizer ld12
100 236 9fvpA Crystal structure of 14-3-3 sigma in complex with tau ps214 peptide and covalent stabilizer js24
73 315 9ee7A Folded domains of xrs2 from s.cerevisiae
27 119 9e7oA Pfs230 d13d14 in complex with nanobody w2810
70 284 9e7nA Pfs230 d13d14 in complex with nanobody w2809
64 279 9e7pB Pfs230 d13d14 in complex with nanobody w2812
73 282 9e7oB Pfs230 d13d14 in complex with nanobody w2810
26 125 9e7pA Pfs230 d13d14 in complex with nanobody w2812
29 124 9e7nC Pfs230 d13d14 in complex with nanobody w2809
131 437 9dxcA Model of tubulin dimers used for determining the dimer rise in a taxol-stabilized microtubule-hurp complex
134 426 9dxcB Model of tubulin dimers used for determining the dimer rise in a taxol-stabilized microtubule-hurp complex
133 430 9di0K Cryo-em structure of kif18a bound to a microtubule
18 70 9dnrA Structure of ubr2-rwf complex
52 175 9ddsA Crystal structure of human aagab g domain with e144k mutation
133 439 9di0L Cryo-em structure of kif18a bound to a microtubule
48 174 9ddtA Aagab pseudogtpase domain in complex with ap-1 clathrin adaptor complex sigma 3 subunit
41 121 9ddtB Aagab pseudogtpase domain in complex with ap-1 clathrin adaptor complex sigma 3 subunit
58 356 9di0A Cryo-em structure of kif18a bound to a microtubule
133 430 9dhzA Cryo-em structure of hurp bound to a microtubule
19 75 9dnqA Structure of ubr2-ryf complex
20 72 9dnpA Structure of ubr2-rff complex
19 77 9dnoA Structure of ubr1-rff complex
133 439 9dhzB Cryo-em structure of hurp bound to a microtubule
10 46 9dhzC Cryo-em structure of hurp bound to a microtubule
135 430 9da8A Tau-microtubule structure in the presence of atp
132 439 9da8B Tau-microtubule structure in the presence of atp
0 27 9da8D Tau-microtubule structure in the presence of atp
118 399 8zn9A A vast marine sulfonate-based carbon cycle fueled by novel sulfoquinovosidases
27 134 8ye8A Crystal structure of mouse bahcc1 ttd domain in complex with h4k20me1 peptide