4LUQ
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3WA5
| Crystal Structure of type VI peptidoglycan muramidase effector Tse3 in complex with its cognate immunity protein Tsi3 | Descriptor: | 1,2-ETHANEDIOL, CALCIUM ION, Tse3-specific immunity protein, ... | Authors: | Ding, J, Wang, T, Liu, W, Wang, D.C. | Deposit date: | 2013-04-26 | Release date: | 2013-10-02 | Last modified: | 2019-12-25 | Method: | X-RAY DIFFRACTION (1.9 Å) | Cite: | Complex structure of type VI peptidoglycan muramidase effector and a cognate immunity protein. Acta Crystallogr.,Sect.D, 69, 2013
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4N7S
| Crystal structure of Tse3-Tsi3 complex with Zinc ion | Descriptor: | ACETATE ION, CALCIUM ION, CHLORIDE ION, ... | Authors: | Shang, G.J. | Deposit date: | 2013-10-16 | Release date: | 2014-04-23 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (2.101 Å) | Cite: | Structural insights into the T6SS effector protein Tse3 and the Tse3-Tsi3 complex from Pseudomonas aeruginosa reveal a calcium-dependent membrane-binding mechanism Mol.Microbiol., 92, 2014
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4N80
| Crystal structure of Tse3-Tsi3 complex | Descriptor: | CALCIUM ION, Uncharacterized protein, ZINC ION | Authors: | Shang, G.J. | Deposit date: | 2013-10-16 | Release date: | 2014-04-23 | Last modified: | 2023-11-08 | Method: | X-RAY DIFFRACTION (2.4 Å) | Cite: | Structural insights into the T6SS effector protein Tse3 and the Tse3-Tsi3 complex from Pseudomonas aeruginosa reveal a calcium-dependent membrane-binding mechanism Mol.Microbiol., 92, 2014
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4M5F
| complex structure of Tse3-Tsi3 | Descriptor: | CALCIUM ION, PHOSPHATE ION, Uncharacterized protein | Authors: | Gu, L.C. | Deposit date: | 2013-08-08 | Release date: | 2014-04-23 | Last modified: | 2023-11-08 | Method: | X-RAY DIFFRACTION (2.5 Å) | Cite: | Structural insights into the T6SS effector protein Tse3 and the Tse3-Tsi3 complex from Pseudomonas aeruginosa reveal a calcium-dependent membrane-binding mechanism Mol.Microbiol., 92, 2014
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4N88
| Crystal structure of Tse3-Tsi3 complex with calcium ion | Descriptor: | CALCIUM ION, Uncharacterized protein | Authors: | Shang, G.J. | Deposit date: | 2013-10-17 | Release date: | 2014-04-23 | Last modified: | 2023-11-08 | Method: | X-RAY DIFFRACTION (2.8 Å) | Cite: | Structural insights into the T6SS effector protein Tse3 and the Tse3-Tsi3 complex from Pseudomonas aeruginosa reveal a calcium-dependent membrane-binding mechanism Mol.Microbiol., 92, 2014
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8IK0
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8IK3
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6NT9
| Cryo-EM structure of the complex between human TBK1 and chicken STING | Descriptor: | Serine/threonine-protein kinase TBK1, Stimulator of interferon genes protein | Authors: | Shang, G, Zhang, C, Chen, Z.J, Bai, X, Zhang, X. | Deposit date: | 2019-01-28 | Release date: | 2019-03-06 | Last modified: | 2024-03-20 | Method: | ELECTRON MICROSCOPY (3.3 Å) | Cite: | Structural basis of STING binding with and phosphorylation by TBK1. Nature, 567, 2019
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6NT6
| Cryo-EM structure of full-length chicken STING in the apo state | Descriptor: | Stimulator of interferon genes protein | Authors: | Shang, G, Zhang, C, Chen, Z.J, Bai, X, Zhang, X. | Deposit date: | 2019-01-28 | Release date: | 2019-03-06 | Last modified: | 2024-03-20 | Method: | ELECTRON MICROSCOPY (4 Å) | Cite: | Cryo-EM structures of STING reveal its mechanism of activation by cyclic GMP-AMP. Nature, 567, 2019
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6NT7
| Cryo-EM structure of full-length chicken STING in the cGAMP-bound dimeric state | Descriptor: | Stimulator of interferon genes protein, cGAMP | Authors: | Shang, G, Zhang, C, Chen, Z.J, Bai, X, Zhang, X. | Deposit date: | 2019-01-28 | Release date: | 2019-03-06 | Last modified: | 2024-03-20 | Method: | ELECTRON MICROSCOPY (4 Å) | Cite: | Cryo-EM structures of STING reveal its mechanism of activation by cyclic GMP-AMP. Nature, 567, 2019
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6NT8
| Cryo-EM structure of full-length chicken STING in the cGAMP-bound tetrameric state | Descriptor: | Stimulator of interferon genes protein, cGAMP | Authors: | Shang, G, Zhang, C, Chen, Z.J, Bai, X, Zhang, X. | Deposit date: | 2019-01-28 | Release date: | 2019-03-06 | Last modified: | 2024-03-20 | Method: | ELECTRON MICROSCOPY (6.5 Å) | Cite: | Cryo-EM structures of STING reveal its mechanism of activation by cyclic GMP-AMP. Nature, 567, 2019
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