6D88
 
 | Tubulin-RB3_SLD-TTL in complex with compound 13f | Descriptor: | 2-(N-MORPHOLINO)-ETHANESULFONIC ACID, CALCIUM ION, GUANOSINE-5'-DIPHOSPHATE, ... | Authors: | Kumar, G, Wang, Y, Li, W, White, S.W. | Deposit date: | 2018-04-26 | Release date: | 2018-09-12 | Last modified: | 2024-03-13 | Method: | X-RAY DIFFRACTION (2.853 Å) | Cite: | Structural Modification of the 3,4,5-Trimethoxyphenyl Moiety in the Tubulin Inhibitor VERU-111 Leads to Improved Antiproliferative Activities. J. Med. Chem., 61, 2018
|
|
6DPW
 
 | Undecorated GTPgammaS microtubule | Descriptor: | 5'-GUANOSINE-DIPHOSPHATE-MONOTHIOPHOSPHATE, GUANOSINE-5'-TRIPHOSPHATE, MAGNESIUM ION, ... | Authors: | Zhang, R, Nogales, E. | Deposit date: | 2018-06-09 | Release date: | 2018-07-04 | Last modified: | 2024-03-13 | Method: | ELECTRON MICROSCOPY (3.5 Å) | Cite: | Separating the effects of nucleotide and EB binding on microtubule structure. Proc. Natl. Acad. Sci. U.S.A., 115, 2018
|
|
8JJB
 
 | Crystal structure of T2R-TTL-Y61 complex | Descriptor: | 2-(N-MORPHOLINO)-ETHANESULFONIC ACID, CALCIUM ION, CHLORIDE ION, ... | Authors: | Yang, J. | Deposit date: | 2023-05-30 | Release date: | 2024-03-27 | Method: | X-RAY DIFFRACTION (2.68 Å) | Cite: | Structure-based design and synthesis of BML284 derivatives: A novel class of colchicine-site noncovalent tubulin degradation agents. Eur.J.Med.Chem., 268, 2024
|
|
6BRF
 
 | Tubulin-RB3_SLD-TTL in complex with heterocyclic pyrimidine compound 4b | Descriptor: | 2-(N-MORPHOLINO)-ETHANESULFONIC ACID, 2-chloro-4-(6-methoxy-3,4-dihydroquinolin-1(2H)-yl)pyrido[3,2-d]pyrimidine, CALCIUM ION, ... | Authors: | Kumar, G, Wang, Y, Li, W, White, S.W. | Deposit date: | 2017-11-30 | Release date: | 2018-06-27 | Last modified: | 2024-03-13 | Method: | X-RAY DIFFRACTION (2.5 Å) | Cite: | Heterocyclic-Fused Pyrimidines as Novel Tubulin Polymerization Inhibitors Targeting the Colchicine Binding Site: Structural Basis and Antitumor Efficacy. J. Med. Chem., 61, 2018
|
|
6CVN
 
 | |
8GZV
 
 | Klebsiella pneumoniae FtsZ complexed with monobody (P212121) | Descriptor: | Cell division protein FtsZ, GUANOSINE-5'-DIPHOSPHATE, Monobody | Authors: | Matsumura, H, Yoshizawa, T, Fujita, J, Tanaka, S, Amesaka, H. | Deposit date: | 2022-09-27 | Release date: | 2023-07-19 | Last modified: | 2023-11-29 | Method: | X-RAY DIFFRACTION (2.2 Å) | Cite: | Structures of a FtsZ single protofilament and a double-helical tube in complex with a monobody. Nat Commun, 14, 2023
|
|
8GZX
 
 | Escherichia coli FtsZ complexed with monobody (P212121) | Descriptor: | Cell division protein FtsZ, GUANOSINE-5'-DIPHOSPHATE, Monobody | Authors: | Matsumura, H, Yoshizawa, T, Fujita, J, Tanaka, S, Amesaka, H. | Deposit date: | 2022-09-27 | Release date: | 2023-07-19 | Last modified: | 2023-11-29 | Method: | X-RAY DIFFRACTION (1.84 Å) | Cite: | Structures of a FtsZ single protofilament and a double-helical tube in complex with a monobody. Nat Commun, 14, 2023
|
|
8GZW
 
 | Klebsiella pneumoniae FtsZ complexed with monobody (P21) | Descriptor: | Cell division protein FtsZ, GUANOSINE-5'-DIPHOSPHATE, Monobody | Authors: | Matsumura, H, Yoshizawa, T, Fujita, J, Tanaka, S, Amesaka, H. | Deposit date: | 2022-09-27 | Release date: | 2023-07-19 | Last modified: | 2023-11-29 | Method: | X-RAY DIFFRACTION (2.5 Å) | Cite: | Structures of a FtsZ single protofilament and a double-helical tube in complex with a monobody. Nat Commun, 14, 2023
|
|
8GZY
 
 | Escherichia coli FtsZ complexed with monobody (P21) | Descriptor: | Cell division protein FtsZ, GUANOSINE-5'-DIPHOSPHATE, Monobody | Authors: | Matsumura, H, Yoshizawa, T, Fujita, J, Tanaka, S, Amesaka, H. | Deposit date: | 2022-09-27 | Release date: | 2023-07-19 | Last modified: | 2023-11-29 | Method: | X-RAY DIFFRACTION (2.6 Å) | Cite: | Structures of a FtsZ single protofilament and a double-helical tube in complex with a monobody. Nat Commun, 14, 2023
|
|
8H1O
 
 | Cryo-EM structure of KpFtsZ-monobody double helical tube | Descriptor: | Cell division protein FtsZ, GUANOSINE-5'-DIPHOSPHATE, Mb(Ec/KpFtsZ_S1) | Authors: | Fujita, J, Amesaka, H, Yoshizawa, T, Kuroda, N, Kamimura, N, Hara, M, Inoue, T, Namba, K, Tanaka, S, Matsumura, H. | Deposit date: | 2022-10-03 | Release date: | 2023-08-02 | Last modified: | 2024-07-03 | Method: | ELECTRON MICROSCOPY (2.67 Å) | Cite: | Structures of a FtsZ single protofilament and a double-helical tube in complex with a monobody. Nat Commun, 14, 2023
|
|
9E2G
 
 | Cryo-EM structure of 48 nm repeat of microtubule doublet from T. brucei flagellum | Descriptor: | CCDC81 HU domain-containing protein, CMF34/CARP4, Calcium-binding protein, ... | Authors: | Xia, X, Shimogawa, M.M, Wang, H, Liu, S, Wijono, A, Langousis, G, Kassem, A.M, Wohlschlegel, J.A, Hill, K, Zhou, Z.H. | Deposit date: | 2024-10-22 | Release date: | 2025-03-12 | Last modified: | 2025-03-26 | Method: | ELECTRON MICROSCOPY (2.8 Å) | Cite: | Trypanosome doublet microtubule structures reveal flagellum assembly and motility mechanisms. Science, 387, 2025
|
|
9E78
 
 | 48-nm repeat of the Leishmania tarentolae doublet microtubule | Descriptor: | ADENOSINE-5'-TRIPHOSPHATE, ArcMAP1, ArcMAP2, ... | Authors: | Doran, M.H, Ren, P, Hoog, J.L, Brown, A. | Deposit date: | 2024-11-01 | Release date: | 2025-03-12 | Last modified: | 2025-03-26 | Method: | ELECTRON MICROSCOPY (2.9 Å) | Cite: | Evolutionary adaptations of doublet microtubules in trypanosomatid parasites. Science, 387, 2025
|
|
4B46
 
 | |
6CVJ
 
 | |
4ABO
 
 | Mal3 CH domain homology model and mammalian tubulin (2XRP) docked into the 8.6-Angstrom cryo-EM map of Mal3-GTPgammaS-microtubules | Descriptor: | 5'-GUANOSINE-DIPHOSPHATE-MONOTHIOPHOSPHATE, GUANOSINE-5'-TRIPHOSPHATE, MICROTUBULE INTEGRITY PROTEIN MAL3, ... | Authors: | Maurer, S.P, Fourniol, F.J, Bohner, G, Moores, C.A, Surrey, T. | Deposit date: | 2011-12-09 | Release date: | 2012-06-06 | Last modified: | 2024-05-08 | Method: | ELECTRON MICROSCOPY (8.6 Å) | Cite: | Ebs Recognize a Nucleotide-Dependent Structural CAP at Growing Microtubule Ends. Cell(Cambridge,Mass.), 149, 2012
|
|
4B45
 
 | |
9DUQ
 
 | HURP(65-174) bound to GMPCPP-stabilized microtubule | Descriptor: | Disks large-associated protein 5, GUANOSINE-5'-TRIPHOSPHATE, MAGNESIUM ION, ... | Authors: | Ma, M, Valdez, V, Petry, S, Zhang, R. | Deposit date: | 2024-10-03 | Release date: | 2024-11-27 | Method: | ELECTRON MICROSCOPY (2.8 Å) | Cite: | HURP facilitates spindle assembly by stabilizing microtubules and working synergistically with TPX2. Nat Commun, 15, 2024
|
|
6BRY
 
 | Tubulin-RB3_SLD-TTL in complex with heterocyclic pyrimidine compound 6a | Descriptor: | 1-(2-chlorofuro[3,2-d]pyrimidin-4-yl)-6-methoxy-1,2,3,4-tetrahydroquinoline, 2-(N-MORPHOLINO)-ETHANESULFONIC ACID, CALCIUM ION, ... | Authors: | Kumar, G, Wang, Y, Li, W, White, S.W. | Deposit date: | 2017-12-01 | Release date: | 2018-06-27 | Last modified: | 2024-03-13 | Method: | X-RAY DIFFRACTION (2.7 Å) | Cite: | Heterocyclic-Fused Pyrimidines as Novel Tubulin Polymerization Inhibitors Targeting the Colchicine Binding Site: Structural Basis and Antitumor Efficacy. J. Med. Chem., 61, 2018
|
|
4ATU
 
 | Human doublecortin N-DC repeat plus linker, and tubulin (2XRP) docked into an 8A cryo-EM map of doublecortin-stabilised microtubules reconstructed in absence of kinesin | Descriptor: | GUANOSINE-5'-DIPHOSPHATE, GUANOSINE-5'-TRIPHOSPHATE, NEURONAL MIGRATION PROTEIN DOUBLECORTIN, ... | Authors: | Liu, J.S, Schubert, C.R, Fu, X, Fourniol, F.J, Jaiswal, J.K, Houdusse, A, Stultz, C.M, Moores, C.A, Walsh, C.A. | Deposit date: | 2012-05-09 | Release date: | 2012-09-26 | Last modified: | 2024-05-08 | Method: | ELECTRON MICROSCOPY (8.3 Å) | Cite: | Molecular Basis for Specific Regulation of Neuronal Kinesin- 3 Motors by Doublecortin Family Proteins. Mol.Cell, 47, 2012
|
|
9CPC
 
 | Atomic model of porcine brain ventricles cilia doublet microtubule (48-nm periodicity) | Descriptor: | Armadillo repeat-containing protein 4 isoform 1, CFAP107/C1orf158, Chromosome 1 C15orf65 homolog, ... | Authors: | Sun, C, Zeng, J, Zhang, R. | Deposit date: | 2024-07-18 | Release date: | 2024-10-23 | Last modified: | 2025-03-19 | Method: | ELECTRON MICROSCOPY (3.65 Å) | Cite: | Structural diversity of axonemes across mammalian motile cilia. Nature, 637, 2025
|
|
9CPB
 
 | Atomic model of bovine Fallopian tube cilia doublet microtubule (48-nm periodicity) | Descriptor: | Armadillo repeat containing 4, CFAP141, CFAP276, ... | Authors: | Sun, C, Zeng, J, Zhang, R. | Deposit date: | 2024-07-18 | Release date: | 2024-10-30 | Last modified: | 2025-03-19 | Method: | ELECTRON MICROSCOPY (3.52 Å) | Cite: | Structural diversity of axonemes across mammalian motile cilia. Nature, 637, 2025
|
|
6DPV
 
 | Undecorated GDP microtubule | Descriptor: | GUANOSINE-5'-DIPHOSPHATE, GUANOSINE-5'-TRIPHOSPHATE, MAGNESIUM ION, ... | Authors: | Zhang, R, Nogales, E. | Deposit date: | 2018-06-09 | Release date: | 2018-07-04 | Last modified: | 2024-03-13 | Method: | ELECTRON MICROSCOPY (3.3 Å) | Cite: | Separating the effects of nucleotide and EB binding on microtubule structure. Proc. Natl. Acad. Sci. U.S.A., 115, 2018
|
|
9D5N
 
 | 48-nm doublet microtubule from Trichomonas vaginalis strain G3 | Descriptor: | Cilia- and flagella-associated protein 20, Cilia- and flagella-associated protein 45, Cilia- and flagella-associated protein 52, ... | Authors: | Stevens, A, Zhou, H.Z, Kashyap, S, Crofut, E.J. | Deposit date: | 2024-08-13 | Release date: | 2025-05-14 | Method: | ELECTRON MICROSCOPY (4.2 Å) | Cite: | Structures of Native Doublet Microtubules from Trichomonas vaginalis Reveal Parasite-Specific Proteins. Nat Commun, 16, 2025
|
|
8OU0
 
 | |
6BS2
 
 | Tubulin-RB3_SLD-TTL in complex with heterocyclic pyrimidine compound 8b | Descriptor: | 1-(3,6-dimethyl[1,2]oxazolo[5,4-d]pyrimidin-4-yl)-6-methoxy-1,2,3,4-tetrahydroquinoline, 2-(N-MORPHOLINO)-ETHANESULFONIC ACID, CALCIUM ION, ... | Authors: | Kumar, G, Wang, Y, Li, W, White, S.W. | Deposit date: | 2017-12-01 | Release date: | 2018-06-27 | Last modified: | 2024-03-13 | Method: | X-RAY DIFFRACTION (2.65 Å) | Cite: | Heterocyclic-Fused Pyrimidines as Novel Tubulin Polymerization Inhibitors Targeting the Colchicine Binding Site: Structural Basis and Antitumor Efficacy. J. Med. Chem., 61, 2018
|
|