Characterisation of the substrate specificity of homogeneous vaccinia virus uracil-DNA glycosylase. 2003

Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
Laboratoire de Virologie, Centre de Recherches du Service de Santé des Armées (CRSSA) Emile Pardé, Grenoble, France.

The decision to stop smallpox vaccination and the loss of specific immunity in a large proportion of the population could jeopardise world health due to the possibility of a natural or provoked re-emergence of smallpox. Therefore, it is mandatory to improve the current capability to prevent or treat such infections. The DNA repair protein uracil-DNA glycosylase (UNG) is one of the viral enzymes important for poxvirus pathogenesis. Consequently, the inhibition of UNG could be a rational strategy for the treatment of infections with poxviruses. In order to develop inhibitor assays for UNG, as a first step, we have characterised the recombinant vaccinia virus UNG (vUNG) and compared it with the human nuclear form (hUNG2) and catalytic fragment (hUNG) UNG. In contrast to hUNG2, vUNG is strongly inhibited in the presence of 7.5 mM MgCl(2). We have shown that highly purified vUNG is not inhibited by a specific uracil-DNA glycosylase inhibitor. Interestingly, both viral and human enzymes preferentially excise uracil when it is opposite to cytosine. The present study provides the basis for the design of specific inhibitors for vUNG.

UI MeSH Term Description Entries
D007527 Isoenzymes Structurally related forms of an enzyme. Each isoenzyme has the same mechanism and classification, but differs in its chemical, physical, or immunological characteristics. Alloenzyme,Allozyme,Isoenzyme,Isozyme,Isozymes,Alloenzymes,Allozymes
D009841 Oligonucleotides Polymers made up of a few (2-20) nucleotides. In molecular genetics, they refer to a short sequence synthesized to match a region where a mutation is known to occur, and then used as a probe (OLIGONUCLEOTIDE PROBES). (Dorland, 28th ed) Oligonucleotide
D011994 Recombinant Proteins Proteins prepared by recombinant DNA technology. Biosynthetic Protein,Biosynthetic Proteins,DNA Recombinant Proteins,Recombinant Protein,Proteins, Biosynthetic,Proteins, Recombinant DNA,DNA Proteins, Recombinant,Protein, Biosynthetic,Protein, Recombinant,Proteins, DNA Recombinant,Proteins, Recombinant,Recombinant DNA Proteins,Recombinant Proteins, DNA
D004247 DNA A deoxyribonucleotide polymer that is the primary genetic material of all cells. Eukaryotic and prokaryotic organisms normally contain DNA in a double-stranded state, yet several important biological processes transiently involve single-stranded regions. DNA, which consists of a polysugar-phosphate backbone possessing projections of purines (adenine and guanine) and pyrimidines (thymine and cytosine), forms a double helix that is held together by hydrogen bonds between these purines and pyrimidines (adenine to thymine and guanine to cytosine). DNA, Double-Stranded,Deoxyribonucleic Acid,ds-DNA,DNA, Double Stranded,Double-Stranded DNA,ds DNA
D004277 DNA, Single-Stranded A single chain of deoxyribonucleotides that occurs in some bacteria and viruses. It usually exists as a covalently closed circle. Single-Stranded DNA,DNA, Single Stranded,Single Stranded DNA
D004591 Electrophoresis, Polyacrylamide Gel Electrophoresis in which a polyacrylamide gel is used as the diffusion medium. Polyacrylamide Gel Electrophoresis,SDS-PAGE,Sodium Dodecyl Sulfate-PAGE,Gel Electrophoresis, Polyacrylamide,SDS PAGE,Sodium Dodecyl Sulfate PAGE,Sodium Dodecyl Sulfate-PAGEs
D004789 Enzyme Activation Conversion of an inactive form of an enzyme to one possessing metabolic activity. It includes 1, activation by ions (activators); 2, activation by cofactors (coenzymes); and 3, conversion of an enzyme precursor (proenzyme or zymogen) to an active enzyme. Activation, Enzyme,Activations, Enzyme,Enzyme Activations
D004791 Enzyme Inhibitors Compounds or agents that combine with an enzyme in such a manner as to prevent the normal substrate-enzyme combination and the catalytic reaction. Enzyme Inhibitor,Inhibitor, Enzyme,Inhibitors, Enzyme
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D013379 Substrate Specificity A characteristic feature of enzyme activity in relation to the kind of substrate on which the enzyme or catalytic molecule reacts. Specificities, Substrate,Specificity, Substrate,Substrate Specificities

Related Publications

Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
October 2007, Biochemistry,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
December 2013, Acta crystallographica. Section F, Structural biology and crystallization communications,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
June 2015, BMC structural biology,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
July 2015, The Journal of biological chemistry,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
July 2007, BMC structural biology,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
June 1981, Nucleic acids research,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
October 2001, Nature,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
February 1994, Virology,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
June 2002, The EMBO journal,
Natale Scaramozzino, and Guenhael Sanz, and Jean Marc Crance, and Murat Saparbaev, and Robert Drillien, and Jacques Laval, and Bodil Kavli, and Daniel Garin
January 1998, The Journal of biological chemistry,
Copied contents to your clipboard!