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Recent Advances of DNA Tetrahedra for Therapeutic Delivery and Biosensing.

Author(s): Copp W, Pontarelli A, Wilds CJ

The chemical and self-assembly properties of nucleic acids make them ideal for the construction of discrete structures and stimuli-responsive devices for a diverse array of applications. Amongst the various three-dimensional assemblies, DNA tetrahedra are o...

Article GUID: 33506614

O6-Alkylguanine DNA Alkyltransferase Mediated Disassembly of a DNA Tetrahedron.

Author(s): Copp W, Wilds CJ

Chemistry. 2020 Jun 16;: Authors: Copp W, Wilds CJ

Article GUID: 32543755

Influence of nucleotide modifications at the C2' position on the Hoogsteen base-paired parallel-stranded duplex of poly(A) RNA.

Author(s): Copp W, Denisov AY, Xie J, Noronha AM, Liczner C, Safaee N, Wilds CJ, Gehring K

Nucleic Acids Res. 2017 Sep 29;45(17):10321-10331 Authors: Copp W, Denisov AY, Xie J, Noronha AM, Liczner C, Safaee N, Wilds CJ, Gehring K

Article GUID: 28973475

Covalent capture of OGT's active site using engineered human-E. coli chimera and intrastrand DNA cross-links.

Author(s): Copp W, O'Flaherty DK, Wilds CJ

Org Biomol Chem. 2018 11 28;16(46):9053-9058 Authors: Copp W, O'Flaherty DK, Wilds CJ

Article GUID: 30430154


Title:Covalent capture of OGT's active site using engineered human-E. coli chimera and intrastrand DNA cross-links.
Authors:Copp WO'Flaherty DKWilds CJ
Link:https://www.ncbi.nlm.nih.gov/pubmed/30430154?dopt=Abstract
Category:Org Biomol Chem
PMID:30430154
Dept Affiliation: CHEMBIOCHEM
1 Department of Chemistry and Biochemistry, Concordia University, Montréal, Québec H4B1R6, Canada. chris.wilds@concordia.ca.

Description:

Covalent capture of OGT's active site using engineered human-E. coli chimera and intrastrand DNA cross-links.

Org Biomol Chem. 2018 11 28;16(46):9053-9058

Authors: Copp W, O'Flaherty DK, Wilds CJ

Abstract

O 6-Alkylguanine DNA alkyltransferases (AGTs) are proteins found in most organisms whose role is to remove alkylation damage from the O6- and O4-positions of 2'-deoxyguanosine (dG) and thymidine (dT), respectively. Variations in active site residues between AGTs from different organisms leads to differences in repair proficiency: The human variant (hAGT) has a proclivity for removal of alkyl groups at the O6-position of guanine and the E. coli OGT protein has activity towards the O4-position of thymine. A chimeric protein (hOGT) that our laboratory has engineered with twenty of the active site residues mutated in hAGT to those found in OGT, exhibited activity towards a broader range of substrates relative to native OGT. Among the substrates that the hOGT protein was found to act upon was interstrand cross-linked DNA connected by an alkylene linkage at the O6-position of dG to the complementary strand. In the present study the activity of hOGT towards DNA containing alkylene intrastrand cross-links (IaCL) at the O6- and O4-positions respectively of dG and dT, which lack a phosphodiester linkage between the connected residues, was evaluated. The hOGT protein exhibited proficiency at removal of an alkylene linkage at the O6-atom of dG but the O4-position of dT was refractory to protein activity. The activity of the chimeric hOGT protein towards these IaCLs to prepare well defined DNA-protein cross-linked conjugates will enable mechanistic and high resolution structural studies to address the differences observed in the repair adeptness of O4-alkylated dT by the OGT protein relative to other AGT variants.

PMID: 30430154 [PubMed - indexed for MEDLINE]