Claims
- 1. A probe for use in an enzyme-linked assay comprising (1) a disulfide-activated nuclease enzyme selected from active P1 and active S1 nucleases and (2) a specific binding member (“sbm”) selected from an antibody, or a functional fragment thereof, and a single-stranded nucleic acid, the single-stranded nucleic acid having a 5′-end bearing a thiol group, the enzyme and the sbm being covalently attached to each other via a disulfide exchange linkage.
- 2. The probe of claim 1 wherein the nuclease enzyme is a 2-pyridyl disulphide-activated nuclease enzyme.
- 3. An enzyme-linked assay employing the probe of claim 2 comprising the steps of:(i) contacting a sample suspected of containing an analyte with a carrier having a carrier sbm immobilized to it, wherein the analyte in the sample binds to the carrier sbm; (ii) contacting the sample with the probe of claim 2 wherein the probe binds to the analyte via the probe sbm; and (iii) contacting the bound probe with a substrate, wherein activity of the nuclease on the substrate leads to a detectable signal.
- 4. An assay according to claim 3 wherein the probe sbm comprises antihuman IgG antibody, the carrier sbm comprises measles antigen, and the analyte comprises human serum IgG antibodies to measles.
- 5. An assay according to claim 3 wherein the probe comprises an oligonucleotide and the analyte comprises single-stranded DNA.
- 6. An assay according to claim 3 wherein the substrate comprises an apoenzyme which is converted into a holoenzyme by interaction with an accessory subunit; and a masked form of said subunit which is converted into its active unmasked form by the action of the nuclease of the probe.
- 7. An assay according to claim 6 wherein said subunit is FAD and said masked form is 3′-FADP.
- 8. An assay according to claim 6 wherein said apoenzyme is apo-glucose oxidase or apo-D-amino oxidase.
- 9. An enzyme-linked assay employing the probe of claim 1 comprising the steps of:(i) contacting a sample suspected of containing an analyte with a carrier having a carrier sbm immobilized to it wherein the analyte in the sample binds to the carrier sbm; (ii) contacting the sample with the probe of claim 1 wherein the probe binds to the analyte via the probe sbm; and (iii) contacting the sample containing the bound probe with a substrate comprising apo-glucose oxidase or apo-D-amino oxidase and 3′-FADP, wherein 3′ FADP is converted to FAD by the action of the nuclease to produce a detectable signal.
- 10. An assay kit comprising:(1) a probe composed of a disulfide-activated nuclease enzyme selected from active P1 and active S1 nucleases covalently attached to a specific binding member (“sbm”) selected from an antibody, or a functional fragment thereof, and a single-stranded nucleic acid, the single-stranded nucleic acid having a 5′-end bearing a thiol group and the covalent attachment of the enzyme to the sbm being through a disulfide exchange linkage; (2) a 3′-FADP capable of being hydrolyzed by a nuclease P1 or S1 enzyme to yield FAD; (3) an apoenzyme capable of forming a holoenzyme with FAD, the apoenzyme being selected from apo-glucose oxidase and apo-D-amino oxidase; and (4) a substrate capable of reacting with the holoenzyme to generate a detectable signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9622524 |
Oct 1996 |
GB |
|
Parent Case Info
This application is a 371 of PCT/GB97/02981, filed Oct. 29, 1997.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/GB97/02981 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO98/19168 |
5/7/1998 |
WO |
A |
US Referenced Citations (5)
Number |
Name |
Date |
Kind |
4837167 |
Schoemaker et al. |
Jun 1989 |
A |
5006472 |
Dove et al. |
Apr 1991 |
A |
5145780 |
Oishi et al. |
Sep 1992 |
A |
5445942 |
Rabin et al. |
Aug 1995 |
A |
5563063 |
Hirasawa et al. |
Oct 1996 |
A |
Foreign Referenced Citations (8)
Number |
Date |
Country |
2156518 |
Oct 1985 |
DE |
0061071 |
Sep 1982 |
EP |
0124124 |
Nov 1984 |
EP |
0401001 |
Dec 1990 |
EP |
0516948 |
Dec 1992 |
EP |
2018986 |
Oct 1979 |
GB |
WO9000252 |
Jan 1990 |
WO |
WO9641015 |
Dec 1996 |
WO |
Non-Patent Literature Citations (4)
Entry |
Sigma catalog, 1994, p. 754.* |
Harbon et al, Amplified Assay of Alkaline Phosphatase Using Flavinadenine Dinucleotide Phosphate as Substrate (1992)Anal. Biochem. 206: 119-124. |
Barber and Westermann, The rodlet of Semotilus atromaculatus and Catostomus commersoni(Teleostei): studies on its identity using histochemistry and Dnase I —gold, Rnase A-gold and S1 nuclease-gold labeling techniques(1986) Can J Zool 64: 805-13. |
Fujimoto et al, Substrate Specificity of Nuclease P1 (1974) Agr. Biol. Chem. 38(9): 1555-1561. |