Structural Entry Filters:

Search Count: 15

1GHV image
1GHV
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Hirudo medicinalis, Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.85 Å Release Date: 2002-01-22
Classification: HYDROLASE/HYDROLASE INHIBITOR

1GHW image
1GHW
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Hirudo medicinalis, Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.75 Å Release Date: 2002-01-22
Classification: HYDROLASE/HYDROLASE INHIBITOR

1GHX image
1GHX
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Hirudo medicinalis, Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.65 Å Release Date: 2002-01-22
Classification: HYDROLASE/HYDROLASE INHIBITOR
Ligands: ZN, CA, NA, BMZ

1GHY image
1GHY
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Hirudo medicinalis, Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.85 Å Release Date: 2002-01-22
Classification: HYDROLASE/HYDROLASE INHIBITOR
Ligands: ZN, NA, CA, 121

1GHZ image
1GHZ
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.39 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, MG, SO4, 120

1GI0 image
1GI0
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.42 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, MG, SO4, BMZ

1GI1 image
1GI1
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.42 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, SO4, BMZ

1GI2 image
1GI2
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.38 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, SO4, 122

1GI3 image
1GI3
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.44 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, BMZ

1GI4 image
1GI4
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.37 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, ZN, SO4, 122

1GI5 image
1GI5
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.60 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, SO4, 123

1GI6 image
1GI6
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Bos taurus
Method: X-RAY DIFFRACTION
Resolution:1.49 Å Release Date: 2002-01-22
Classification: HYDROLASE
Ligands: CA, CL, SO4, 124

1GI7 image
1GI7
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.79 Å Release Date: 2002-01-22
Classification: BLOOD CLOTTING, hydrolase
Ligands: 120, CIT

1GI8 image
1GI8
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.75 Å Release Date: 2002-01-22
Classification: BLOOD CLOTTING, hydrolase
Ligands: CIT, BMZ

1GI9 image
1GI9
A Novel Serine Protease Inhibition Motif Involving A Multi-Centered Short Hydrogen Bonding Network At The Active Site
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:1.80 Å Release Date: 2002-01-22
Classification: BLOOD CLOTTING, hydrolase
Ligands: 123, CIT
Protein Functional Filters: