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Zinc in PDB 6zca: Structure of the B. Subtilis Rna Polymerase in Complex with Held (Monomer)

Enzymatic activity of Structure of the B. Subtilis Rna Polymerase in Complex with Held (Monomer)

All present enzymatic activity of Structure of the B. Subtilis Rna Polymerase in Complex with Held (Monomer):
2.7.7.6; 3.6.4.12;

Zinc Binding Sites:

The binding sites of Zinc atom in the Structure of the B. Subtilis Rna Polymerase in Complex with Held (Monomer) (pdb code 6zca). This binding sites where shown within 5.0 Angstroms radius around Zinc atom.
In total only one binding site of Zinc was determined in the Structure of the B. Subtilis Rna Polymerase in Complex with Held (Monomer), PDB code: 6zca:

Zinc binding site 1 out of 1 in 6zca

Go back to Zinc Binding Sites List in 6zca
Zinc binding site 1 out of 1 in the Structure of the B. Subtilis Rna Polymerase in Complex with Held (Monomer)


Mono view


Stereo pair view

A full contact list of Zinc with other atoms in the Zn binding site number 1 of Structure of the B. Subtilis Rna Polymerase in Complex with Held (Monomer) within 5.0Å range:
probe atom residue distance (Å) B Occ
Y:Zn1201

b:78.4
occ:1.00
CB Y:CYS902 2.2 65.0 1.0
SG Y:CYS818 2.6 71.4 1.0
SG Y:CYS902 2.7 65.0 1.0
SG Y:CYS899 2.7 71.1 1.0
SG Y:CYS892 2.7 66.8 1.0
N Y:CYS899 3.0 71.1 1.0
CG1 Y:VAL898 3.1 75.5 1.0
CA Y:CYS902 3.5 65.0 1.0
CB Y:CYS899 3.5 71.1 1.0
CB Y:CYS818 3.7 71.4 1.0
CA Y:CYS899 3.7 71.1 1.0
N Y:CYS902 3.9 65.0 1.0
C Y:VAL898 4.0 75.5 1.0
CB Y:CYS892 4.0 66.8 1.0
CA Y:VAL898 4.0 75.5 1.0
O Y:CYS899 4.0 71.1 1.0
CB Y:VAL898 4.1 75.5 1.0
C Y:CYS899 4.1 71.1 1.0
C Y:CYS902 4.2 65.0 1.0
N Y:TYR903 4.7 63.8 1.0
O Y:CYS902 4.7 65.0 1.0
N Y:CYS818 4.7 71.4 1.0
CA Y:CYS818 4.7 71.4 1.0
CG2 Y:THR894 4.7 67.2 1.0
NH2 Y:ARG887 4.8 62.1 1.0
CG2 Y:VAL898 4.9 75.5 1.0
CA Y:CYS892 5.0 66.8 1.0

Reference:

H.-P.Pei, T.Hilal, Z.A.Chen, Y.-H.Huang, Y.Gao, N.Said, B.Loll, J.Rappsilber, G.A.Belogurov, I.Artsimovitch, M.C.Wahl. Structural Basis of Energy-Status-Dependent Rna Polymerase Recycling and Hibernation To Be Published.
Page generated: Tue Oct 29 15:36:46 2024

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