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Atomistry » Calcium » PDB 3gy6-3hii » 3hgn » |
Calcium in PDB 3hgn: Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron CrystallographyEnzymatic activity of Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron Crystallography
All present enzymatic activity of Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron Crystallography:
3.4.21.36; Protein crystallography data
The structure of Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron Crystallography, PDB code: 3hgn
was solved by
T.Tamada,
T.Kinoshita,
R.Kuroki,
T.Tada,
with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:
Other elements in 3hgn:
The structure of Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron Crystallography also contains other interesting chemical elements:
Calcium Binding Sites:
The binding sites of Calcium atom in the Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron Crystallography
(pdb code 3hgn). This binding sites where shown within
5.0 Angstroms radius around Calcium atom.
In total only one binding site of Calcium was determined in the Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron Crystallography, PDB code: 3hgn: Calcium binding site 1 out of 1 in 3hgnGo back to Calcium Binding Sites List in 3hgn
Calcium binding site 1 out
of 1 in the Structure of Porcine Pancreatic Elastase Complexed with A Potent Peptidyl Inhibitor FR130180 Determined By Neutron Crystallography
Mono view Stereo pair view
Reference:
T.Tamada,
T.Kinoshita,
K.Kurihara,
M.Adachi,
T.Ohhara,
K.Imai,
R.Kuroki,
T.Tada.
Combined High-Resolution Neutron and X-Ray Analysis of Inhibited Elastase Confirms the Active-Site Oxyanion Hole But Rules Against A Low-Barrier Hydrogen Bond J.Am.Chem.Soc. V. 131 11033 2009.
Page generated: Sat Jul 13 10:59:09 2024
ISSN: ISSN 0002-7863 PubMed: 19603802 DOI: 10.1021/JA9028846 |
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