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Arsenic in PDB 6x8c: Self-Assembly of A 3D Dna Crystal Lattice (4X5 Junction Version) Containing the J1 Immobile Holliday Junction

Protein crystallography data

The structure of Self-Assembly of A 3D Dna Crystal Lattice (4X5 Junction Version) Containing the J1 Immobile Holliday Junction, PDB code: 6x8c was solved by C.R.Simmons, T.Macculloch, N.Stephanopoulos, H.Yan, with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:

Resolution Low / High (Å) 29.47 / 3.10
Space group P 32 2 1
Cell size a, b, c (Å), α, β, γ (°) 67.926, 67.926, 59.262, 90, 90, 120
R / Rfree (%) 23.8 / 26.7

Arsenic Binding Sites:

The binding sites of Arsenic atom in the Self-Assembly of A 3D Dna Crystal Lattice (4X5 Junction Version) Containing the J1 Immobile Holliday Junction (pdb code 6x8c). This binding sites where shown within 5.0 Angstroms radius around Arsenic atom.
In total only one binding site of Arsenic was determined in the Self-Assembly of A 3D Dna Crystal Lattice (4X5 Junction Version) Containing the J1 Immobile Holliday Junction, PDB code: 6x8c:

Arsenic binding site 1 out of 1 in 6x8c

Go back to Arsenic Binding Sites List in 6x8c
Arsenic binding site 1 out of 1 in the Self-Assembly of A 3D Dna Crystal Lattice (4X5 Junction Version) Containing the J1 Immobile Holliday Junction


Mono view


Stereo pair view

A full contact list of Arsenic with other atoms in the As binding site number 1 of Self-Assembly of A 3D Dna Crystal Lattice (4X5 Junction Version) Containing the J1 Immobile Holliday Junction within 5.0Å range:
probe atom residue distance (Å) B Occ
D:As101

b:153.1
occ:1.00
N7 D:DG10 3.7 63.3 1.0
OP1 D:DT9 3.9 61.8 1.0
O6 D:DG10 4.1 66.5 1.0
OP2 D:DG10 4.2 79.1 1.0
N7 D:DG11 4.3 60.6 1.0
O6 D:DG11 4.3 67.2 1.0
C5 D:DG10 4.4 57.3 1.0
C6 D:DG10 4.6 63.5 1.0
C8 D:DG10 4.6 66.3 1.0
C5' D:DT9 4.8 53.6 1.0

Reference:

C.R.Simmons, T.Macculloch, N.Stephanopoulos, H.Yan. Structural and Computational Based Approach For the Creation of A Toolbox of Immobile Holliday Junctions For Dna-Directed Self-Assembly To Be Published.
Page generated: Sat Aug 21 11:57:02 2021

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