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Atomistry » Chlorine » PDB 9orv-9v6z » 9qyr | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Atomistry » Chlorine » PDB 9orv-9v6z » 9qyr » |
Chlorine in PDB 9qyr: Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183KEnzymatic activity of Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183K
All present enzymatic activity of Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183K:
3.1.1.101; 3.1.1.74; Protein crystallography data
The structure of Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183K, PDB code: 9qyr
was solved by
D.Bischoff,
B.Walla,
R.Janowski,
D.Niessing,
D.Weuster-Botz,
with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:
Chlorine Binding Sites:
The binding sites of Chlorine atom in the Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183K
(pdb code 9qyr). This binding sites where shown within
5.0 Angstroms radius around Chlorine atom.
In total 2 binding sites of Chlorine where determined in the Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183K, PDB code: 9qyr: Jump to Chlorine binding site number: 1; 2; Chlorine binding site 1 out of 2 in 9qyrGo back to![]() ![]()
Chlorine binding site 1 out
of 2 in the Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183K
![]() Mono view ![]() Stereo pair view
Chlorine binding site 2 out of 2 in 9qyrGo back to![]() ![]()
Chlorine binding site 2 out
of 2 in the Crystal Structure of Leaf Branch Compost Cutinase Variant Iccg L50Y Q183K
![]() Mono view ![]() Stereo pair view
Reference:
B.Walla,
A.M.Dietrich,
E.Brames,
D.Bischoff,
S.Fritzsche,
K.Castiglione,
R.Janowski,
D.Niessing,
D.Weuster-Botz.
Application of A Rational Crystal Contact Engineering Strategy on A Poly(Ethylene Terephthalate)-Degrading Cutinase Bioengineering 2025.
Page generated: Mon Aug 4 21:14:43 2025
DOI: 10.3390/BIOENGINEERING12060561 |
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