Recombinant fusion-enzyme with repair activity on DNA...

Drug – bio-affecting and body treating compositions – Antigen – epitope – or other immunospecific immunoeffector – Fusion protein or fusion polypeptide

Reexamination Certificate

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C424S094100, C536S023100

Reexamination Certificate

active

07927603

ABSTRACT:
A recombinant fusion enzyme repairs DNA damaged by UV radiation, and the method of preparing recombinant fusion enzyme. The method includes the fusion of an enzyme coded by a gene isolated fromMicrococcus luteusand a stabilizing peptide having the amino acid sequence described in SEQ ID NO 2. A treatment method intended to repair DNA lesions produced in cells exposed to UV radiation and to repair cell anomalies or lesions produced by sun exposure. Such treatment consists of the administration of a effective amount of recombinant fusion enzyme, or a vector containing the gene coding to the recombinant fusion enzyme, to patients requiring such treatment.

REFERENCES:
PNAS; Feb. 29, 2000; vol. 97; No. 5; pp. 2150-2156; Steffen Emmert et al.;The Xeroderma Pigmentosum Group C Gene Leads to Selective Repair of Cyclobutane Pyrimidine . . . .
Clinical Cancer Research; vol. 8, pp. 2985-2991; Sep. 2002; Lili Liu et al.; Base Excision Repair as a Therapeutic Target in Colon Cancer.
Mutation Research 460 (2000) 257-275; Kosuke Morikawa et al.; pp. 258-270; Three-Dimensional Structural View of Damaged-DNA Recognition; T4 Endonuclease V, . . . .
Journal of Dermatological Science; Guillermo Basilico et al.; pp. 82-88; UV-Specific DNA Repair Recombinant Fusion Enzyme: A New Stable Pharmacologically Active . . . , (2005) 39, 81-88.
The Lancet; vol. 357, No. 9290; pp. 926-929; Daniel Yarosh et al.; Effect of Tpically Applied T4 Endonuclease V in Liposomes on Skin Cancer in Xeroderma Pigmentosum: a . . . , (2001).
National Academy of Sciences USA, vol. 94, pp. 593-598, Jan. 1997 Genetics; Susumu Shiota et al.; UV Endonuclease ofMicrococcus luteus, a Cyclobutane Pyrimidine Dimer . . . .
Annual Review Biochemistry, 1996, 65:135-67; pp. 136-167; Richard D. Wood; DNA Repair in Eukaryotes.
Methods in Enzymotology, vol. 65; pp. 185-201; Sheikh Riazuddin; Purification and Properties of Phrimidine Dimer Specific Endonucleases fromMicrococcus luteus(1977).
Protein Expression and Purification 22, 399-405 (2001); pp. 399-405; Ral Paul et al.; Overexpression and Purification ofHelicobacter pyloriFlavodoxin and Induction . . . .
Protein Expresson and Purification, 23 22-32 (2001); pp. 22-32; Yves Nomine et al.; Formation of Soluble Inclusion Bodies by HPV E6 Oncoprotein Fused to Maltose-Binding . . . .
Biochimica et Biophysica Acta, 698 (1982) 287-294; pp. 287-295; N. V. Tomilin et al. An Analysis of the Repair Processes in Ultraviolet IrradiatedMicrococcus luteusUsing . . . .
Base Excision Repair of DNA Damage, edited by Ian D. Hickson; 1997 Landes Bioscience; pp. 31-44; Serge Boiteux et al.; Repair of Oxidized Purines in DNA.

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