Structural Entry Filters:

Search Count: 27

8QM4 image
8QM4
Potential Drug Binding Sites For Translation Initiation Factor Eif4E
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.85 Å Release Date: 2025-01-15
Classification: TRANSLATION
Ligands: DMS, PGE, W5B

8QM5 image
8QM5
Potential Drug Binding Sites For Translation Initiation Factor Eif4E
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.89 Å Release Date: 2025-01-15
Classification: TRANSLATION
Ligands: W4U, PGE

8QM6 image
8QM6
Potential Drug Binding Sites For Translation Initiation Factor Eif4E
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.93 Å Release Date: 2025-01-15
Classification: TRANSLATION
Ligands: DMS, W2N, W4B, PEG, PGE

8QM7 image
8QM7
Potential Drug Binding Sites For Translation Initiation Factor Eif4E
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:2.19 Å Release Date: 2025-01-15
Classification: TRANSLATION
Ligands: DMS, PGE, W5K, PEG

8QM8 image
8QM8
Potential Drug Binding Sites For Translation Initiation Factor Eif4E
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.59 Å Release Date: 2025-01-15
Classification: TRANSLATION
Ligands: PEG, PGE, W4K, DMS

8QM9 image
8QM9
Potential Drug Binding Sites For Translation Initiation Factor Eif4E
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.97 Å Release Date: 2025-01-15
Classification: TRANSLATION
Ligands: EDO, PEG, DMS, W4K

7NQQ image
7NQQ
Discovery Of Astx029, A Clinical Candidate Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.94 Å Release Date: 2021-10-06
Classification: SIGNALING PROTEIN
Ligands: SO4, DMS, UMN

7NQW image
7NQW
Discovery Of Astx029, A Clinical Candidate Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.78 Å Release Date: 2021-10-06
Classification: SIGNALING PROTEIN
Ligands: SO4, DMS, UNW

7NR3 image
7NR3
Discovery Of Astx029, A Clinical Candidate Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.90 Å Release Date: 2021-10-06
Classification: SIGNALING PROTEIN
Ligands: SO4, UO5

7NR5 image
7NR5
Discovery Of Astx029, A Clinical Candidate Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.77 Å Release Date: 2021-10-06
Classification: SIGNALING PROTEIN
Ligands: SO4, UOH

7NR8 image
7NR8
Discovery Of Astx029, A Clinical Candidate Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.63 Å Release Date: 2021-10-06
Classification: SIGNALING PROTEIN
Ligands: SO4, DMS, EDO, UOE

7NR9 image
7NR9
Discovery Of Astx029, A Clinical Candidate Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.91 Å Release Date: 2021-10-06
Classification: SIGNALING PROTEIN
Ligands: SO4, UOW

6G8X image
6G8X
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.76 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, EQT

6G91 image
6G91
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.80 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, EQW

6G92 image
6G92
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.99 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, ERZ

6G93 image
6G93
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.67 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, EU2

6G97 image
6G97
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.90 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, EQZ

6G9A image
6G9A
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.91 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, ESQ

6G9D image
6G9D
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.80 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, ER8

6G9H image
6G9H
Fragment-Based Discovery Of A Highly Potent, Orally Bioavailable Inhibitor Which Modulates The Phosphorylation And Catalytic Activity Of Erk1/2
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.73 Å Release Date: 2018-05-30
Classification: SIGNALING PROTEIN
Ligands: SO4, ERW
Protein Functional Filters: