Chlorine in PDB 8fhp: Cryo-Em Structure of Human Ncc (Class 3-1)
Other elements in 8fhp:
The structure of Cryo-Em Structure of Human Ncc (Class 3-1) also contains other interesting chemical elements:
Chlorine Binding Sites:
The binding sites of Chlorine atom in the Cryo-Em Structure of Human Ncc (Class 3-1)
(pdb code 8fhp). This binding sites where shown within
5.0 Angstroms radius around Chlorine atom.
In total 2 binding sites of Chlorine where determined in the
Cryo-Em Structure of Human Ncc (Class 3-1), PDB code: 8fhp:
Jump to Chlorine binding site number:
1;
2;
Chlorine binding site 1 out
of 2 in 8fhp
Go back to
Chlorine Binding Sites List in 8fhp
Chlorine binding site 1 out
of 2 in the Cryo-Em Structure of Human Ncc (Class 3-1)
 Mono view
 Stereo pair view
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A full contact list of Chlorine with other atoms in the Cl binding
site number 1 of Cryo-Em Structure of Human Ncc (Class 3-1) within 5.0Å range:
probe
|
atom
|
residue
|
distance (Å)
|
B
|
Occ
|
A:Cl1101
b:53.8
occ:1.00
|
CL01
|
A:XZF1101
|
0.0
|
53.8
|
1.0
|
C23
|
A:XZF1101
|
1.8
|
53.8
|
1.0
|
C22
|
A:XZF1101
|
2.7
|
53.8
|
1.0
|
C21
|
A:XZF1101
|
2.7
|
53.8
|
1.0
|
O11
|
A:XZF1101
|
2.9
|
53.8
|
1.0
|
S04
|
A:XZF1101
|
3.1
|
53.8
|
1.0
|
O10
|
A:XZF1101
|
3.2
|
53.8
|
1.0
|
CB
|
A:LEU355
|
3.4
|
46.9
|
1.0
|
CG
|
A:LEU355
|
3.4
|
46.9
|
1.0
|
CD1
|
A:LEU355
|
3.6
|
46.9
|
1.0
|
CZ
|
A:PHE223
|
3.6
|
45.6
|
1.0
|
CE1
|
A:PHE223
|
3.8
|
45.6
|
1.0
|
N
|
A:LEU355
|
3.9
|
46.9
|
1.0
|
C20
|
A:XZF1101
|
4.0
|
53.8
|
1.0
|
C17
|
A:XZF1101
|
4.0
|
53.8
|
1.0
|
CA
|
A:LEU355
|
4.1
|
46.9
|
1.0
|
CA
|
A:GLY353
|
4.3
|
46.4
|
1.0
|
OH
|
A:TYR540
|
4.4
|
45.8
|
1.0
|
C16
|
A:XZF1101
|
4.5
|
53.8
|
1.0
|
N
|
A:ILE354
|
4.5
|
45.8
|
1.0
|
C
|
A:GLY353
|
4.5
|
46.4
|
1.0
|
C
|
A:LEU355
|
4.6
|
46.9
|
1.0
|
CE1
|
A:TYR540
|
4.6
|
45.8
|
1.0
|
N
|
A:GLY353
|
4.6
|
46.4
|
1.0
|
N14
|
A:XZF1101
|
4.8
|
53.8
|
1.0
|
CD1
|
A:PHE536
|
4.8
|
47.7
|
1.0
|
CE1
|
A:PHE536
|
4.8
|
47.7
|
1.0
|
CE2
|
A:PHE223
|
4.8
|
45.6
|
1.0
|
CD2
|
A:LEU355
|
4.9
|
46.9
|
1.0
|
|
Chlorine binding site 2 out
of 2 in 8fhp
Go back to
Chlorine Binding Sites List in 8fhp
Chlorine binding site 2 out
of 2 in the Cryo-Em Structure of Human Ncc (Class 3-1)
 Mono view
 Stereo pair view
|
A full contact list of Chlorine with other atoms in the Cl binding
site number 2 of Cryo-Em Structure of Human Ncc (Class 3-1) within 5.0Å range:
probe
|
atom
|
residue
|
distance (Å)
|
B
|
Occ
|
B:Cl1101
b:53.7
occ:1.00
|
CL01
|
B:XZF1101
|
0.0
|
53.7
|
1.0
|
C23
|
B:XZF1101
|
1.8
|
53.7
|
1.0
|
C22
|
B:XZF1101
|
2.7
|
53.7
|
1.0
|
C21
|
B:XZF1101
|
2.7
|
53.7
|
1.0
|
O11
|
B:XZF1101
|
2.9
|
53.7
|
1.0
|
S04
|
B:XZF1101
|
3.1
|
53.7
|
1.0
|
O10
|
B:XZF1101
|
3.2
|
53.7
|
1.0
|
CB
|
B:LEU355
|
3.4
|
46.7
|
1.0
|
CG
|
B:LEU355
|
3.4
|
46.7
|
1.0
|
CD1
|
B:LEU355
|
3.6
|
46.7
|
1.0
|
CZ
|
B:PHE223
|
3.6
|
45.0
|
1.0
|
CE1
|
B:PHE223
|
3.8
|
45.0
|
1.0
|
N
|
B:LEU355
|
3.9
|
46.7
|
1.0
|
C20
|
B:XZF1101
|
4.0
|
53.7
|
1.0
|
C17
|
B:XZF1101
|
4.0
|
53.7
|
1.0
|
CA
|
B:LEU355
|
4.1
|
46.7
|
1.0
|
CA
|
B:GLY353
|
4.3
|
46.2
|
1.0
|
OH
|
B:TYR540
|
4.4
|
46.1
|
1.0
|
C16
|
B:XZF1101
|
4.5
|
53.7
|
1.0
|
N
|
B:ILE354
|
4.5
|
45.3
|
1.0
|
C
|
B:GLY353
|
4.5
|
46.2
|
1.0
|
C
|
B:LEU355
|
4.6
|
46.7
|
1.0
|
CE1
|
B:TYR540
|
4.6
|
46.1
|
1.0
|
N
|
B:GLY353
|
4.6
|
46.2
|
1.0
|
N14
|
B:XZF1101
|
4.8
|
53.7
|
1.0
|
CD1
|
B:PHE536
|
4.8
|
47.4
|
1.0
|
CE1
|
B:PHE536
|
4.8
|
47.4
|
1.0
|
CE2
|
B:PHE223
|
4.8
|
45.0
|
1.0
|
CD2
|
B:LEU355
|
4.9
|
46.7
|
1.0
|
|
Reference:
M.Fan,
J.Zhang,
C.Lee,
J.Zhang,
L.Feng.
Structure and Thiazide Inhibition Mechanism of the Human Na-Cl Cotransporter Nature 2023.
ISSN: ESSN 1476-4687
DOI: 10.1038/S41586-023-05718-0
Page generated: Tue Jul 30 09:30:53 2024
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