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Atomistry » Fluorine » PDB 6cr2-6d27 » 6cr7 » |
Fluorine in PDB 6cr7: Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp AnalogueEnzymatic activity of Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp Analogue
All present enzymatic activity of Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp Analogue:
2.7.7.7; Protein crystallography data
The structure of Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp Analogue, PDB code: 6cr7
was solved by
V.K.Batra,
S.H.Wilson,
with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:
Other elements in 6cr7:
The structure of Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp Analogue also contains other interesting chemical elements:
Fluorine Binding Sites:
The binding sites of Fluorine atom in the Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp Analogue
(pdb code 6cr7). This binding sites where shown within
5.0 Angstroms radius around Fluorine atom.
In total only one binding site of Fluorine was determined in the Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp Analogue, PDB code: 6cr7: Fluorine binding site 1 out of 1 in 6cr7Go back to Fluorine Binding Sites List in 6cr7
Fluorine binding site 1 out
of 1 in the Ternary Complex Crystal Structure of Dna Polymerase Beta with A Dideoxy Terminated Primer with Chf, Beta, Gamma Datp Analogue
Mono view Stereo pair view
Reference:
V.K.Batra,
K.Oertell,
W.A.Beard,
B.A.Kashemirov,
C.E.Mckenna,
M.F.Goodman,
S.H.Wilson.
Mapping Functional Substrate-Enzyme Interactions in the Pol Beta Active Site Through Chemical Biology: Structural Responses to Acidity Modification of Incoming Dntps. Biochemistry V. 57 3934 2018.
Page generated: Thu Aug 1 18:40:24 2024
ISSN: ISSN 1520-4995 PubMed: 29874056 DOI: 10.1021/ACS.BIOCHEM.8B00418 |
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