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| United States Patent | 6,372,424 |
| Brow , et al. | April 16, 2002 |
The present invention relates to means for cleaving a nucleic acid cleavage structure in a site-specific manner. Enzymes, including 5' nucleases and 3' exonucleases, are used to detect and identify nucleic acids derived from microorganisms. Methods are provided which allow for the detection and identification of bacterial and viral pathogens in a sample.
| Inventors: | Brow; Mary Ann D. (Madison, WI), Lyamichev; Victor I. (Madison, WI), Olive; David Michael (Madison, WI) |
|---|---|
| Assignee: |
Third Wave Technologies, INC
(Madison,
WI)
|
| Family ID: | 24074696 |
| Appl. No.: | 08/520,946 |
| Filed: | August 30, 1995 |
| Current U.S. Class: | 435/5; 435/6.12; 435/6.17; 435/69.1; 435/91.2; 536/24.3 |
| Current CPC Class: | C07H 21/00 (20130101); C07K 14/4746 (20130101); C07K 14/82 (20130101); C12N 9/1252 (20130101); C12N 15/10 (20130101); C12N 15/113 (20130101); C12Q 1/682 (20130101); C12Q 1/6823 (20130101); C12Q 1/683 (20130101); C12Q 1/6886 (20130101); C12Q 1/689 (20130101); C12Q 1/682 (20130101); C12Q 1/6823 (20130101); C12Q 2537/149 (20130101); C12Q 2525/301 (20130101); C12Q 2521/319 (20130101); C12Q 2537/149 (20130101); C12Q 2521/319 (20130101) |
| Current International Class: | C07H 21/00 (20060101); C07K 14/82 (20060101); C12Q 1/68 (20060101); C12N 15/10 (20060101); C12Q 001/70 (); C12Q 001/68 (); C12Q 021/00 (); C07H 021/04 () |
| Field of Search: | ;435/5,6,69.1,91.2 ;536/24.3 |
| 4511502 | April 1985 | Builder et al. |
| 4511503 | April 1985 | Olson et al. |
| 4512922 | April 1985 | Jones et al. |
| 4518526 | May 1985 | Olson |
| 4683195 | July 1987 | Mullis et al. |
| 4683202 | July 1987 | Mullis |
| 5108892 | April 1992 | Burke et al. |
| 5144019 | September 1992 | Rossi et al. |
| 5422242 | June 1995 | Young |
| 5422253 | June 1995 | Dahlberg et al. |
| 5455170 | October 1995 | Abramson et al. |
| 5541311 | July 1996 | Dahlberg et al. |
| 5614402 | March 1997 | Dahlberg et al. |
| 0 482 714 | Apr 1992 | EP | |||
| WO 90/01069 | Feb 1990 | WO | |||
| WO 90/15157 | Dec 1990 | WO | |||
| WO 91/09950 | Jul 1991 | WO | |||
| WO 92/06200 | Apr 1992 | WO | |||
Lyamichev et. al.. Structure-specific endonucleolytic cleavage of nucleic acids by eubacterial DNA polymerases. Science. vol. 260:778-783, May 7, 1993.* . Seela and Roling. 7-deazapurine containing DNA: efficiency of 7-deaza-dGTP, 7-deaza-dATP, and 7-deaza-dITP incorporation during PCR-amplification and protection from endodeoxyribonuclease hydrolysis. Nuc. Acids Res. vol. 20(1):55-61, May. 1992.* . Young et. al.. Detection of hepatitis C virus RNA by a combined reverse transcription-polymerase chain reaction assay. J. Clin. Microbiol. vol. 31(4):882-886, Apr. 1993.* . Barany, "Genetic disease detection and DNA amplification using cloned thermostable ligase," Proc. Natl. Acad. Sci., 88:189 (1991). . Barany, "The Ligase Chain Reaction in a PCR World," PCR Methods and Applic., 1:5 (1991). . Wu and Wallace, "The Ligation Amplification Reaction (LAR)--Amplification of Specific DNA Sequences Using Sequential Rounds of Template-Dependent Ligation," Genomics 4:560 (1989). . Guatelli et al., "Isothermal in vitro amplification of nucleic acids by a multienzyme reaction modeled after retroviral replication," Proc. Natl. Acad. Sci., 87:1874-1878 (1990) with an erratum at Proc. Natl. Acad. Sic., 87:7797 (1990). . Kwoh et al., "Transcription-based amplification system and detection of amplified human immunodeficiency virus type 1 with a bead-based sandwich hybridization format," Proc. Natl. Acad. Sci., 86:1173-1177 (1989). . Fahy et al., "Self-sustained Sequence Replication (3SR): An Isothermal Transcription-based Amplification System Alternative to PCR," PCR Meth. Appl., 1:25-33 (1991). . Landgren, "Molecular mechanics of nucleic acid sequence amplification," Trends in Genetics 9:199 (1993). . Mullis, "The Polymerase Chain Reaction in an Anemic Mode: How to Avoid Cold Oligodeoxyribonuclear Fusion," PCR Methods Applic., 1:1 (1991). . Kwok et al., "Effects of primer-template mismatches on the polymerase chain reaction: Human immunodeficiency virus type 1 model studies," Nucl. Acids Res., 18:999 (1990). . Duck et al., "Probe Amplifier System Based on Chimeric Cycling Oligonucleotides," BioTech., 9:142 (1990). . Urdea et al., "A novel method for the rapid detection of specific nucleotide sequences in crude biological samples without blotting or radioactivity; application to the analysis if hepatitis B virus in human serum," Gene 61:253-264 (1987). . Gogos et al., "Detection of single base mismatches of thymine and cytosine residues by potassium permanganate and hydroxylamine in the presence of tetralkylammonium salts," Nucl. Acids Res., 18:6807-6817 (1990). . Barlow and Lehrach, "Genetics by gel electrophoresis: the impact of pulsed field gel electrophoresis on mammalian genetics," Trends Genet., 3:167 (1987). . Perlman and Butow, "Mobile Introns and Intron-Encoded Proteins," Science 246:1106 (1989). . Conner, et al., "Detection of sickle cell .beta..sup.S -globin allele by hybridization with synthetic oligonucleotides," Proc. Natl. Acad. Sci. 80:278-282 (1983). . Vogelstein et al., "Genetic Alterations During Colorectal-Tumor Development," N. Eng. J. Med. 319:525-532 (1988). . Farr et al., "Analysis of RAS gene mutations in acute myeloid leukemia by polymerase chain reaction and oligonucleotide probes," Proc. Natl. Acad. Sci. 85:1629-1633 (1988). . Lyons, et al., "Two G Protein Oncogenes in Human Endocrine Tumors," Science 249:655-659 (1990). . Abrams et al., "Comprehensive Detection of Single Base Changes in Human Genomic DNA Using Denaturing Gradient Gel Electrophoresis and a GC Clamp," Genomics 7:463-475 (1990). . Sheffield, et al., "Attachment of a 40-base-pair G+C-rich sequence (GC-clamp) to genomic DNA fragments by the polymerase chain reaction results in improved detection of single-base changes," Proc. Natl. Acad. Sci., 86:232-236 (1989). . Lerman and Silverstein, "Computational Simulation of DNA Melting and Its Application to Denaturing Gradient Gel Electrophoresis," Meth. Enzymol., 155:482-501 (1987). . Wartell et al., "Detecting base pari substitutions in DNA fragments by temperature-gradient gel electrophoresis," Nucl. Acids Res., 18:2699-2701 (1990). . Smith et al., "Novel Method of Detecting Single Base Substitutions in RNA Molecules by Differential Melting Behavior in Solution,"Genomics 3:217-223 (1988). . Borresen et al., "Constant denaturant gel electrophoresis as a rapid screening technique for p53 mutations," Proc. Natl. Acad. Sci. USA 88:8405 (1991). . Scholz, et al., "Rapid screening for Tp53 mutations by temperature gradient gel electrophoresis: a comparison with SSCP analysis," Hum. Mol. Genet. 2:2155 (1993). . Hayashi, "PCR-SSCP: A Simple and Sensitive Method for Detection of Mutations in the Genomic DNA," PCR Meth. Appl., 1:34-38, (1991). . Orita, et al., "Rapid and Sensitive Detection of Point Mutations and DNA Polymorphisms Using the polymerase Chain Reaction," Genomics 5:874-879, (1989). . Liu and Sommer, "Parameters Affecting the Sensitivity of Dideoxy Fingerprinting and SSCP," PCR Methods Appl., 4:97 (1994). . Marmur and Lane, "Strand Separation and Specific Recombination in Deoxyribonucleic acids: Biological Studies," Proc. Natl. Acad. Sci. USA 46:453 (1960). . Doty et al., "Strand Separation and Specific Recombination in Deoxyribonucleic Acids: Physical Chemical Studies," Proc. Natl. Acad. Sci. USA 46:461 (1960). . Wallace et al., "Application of synthetic oligonucleotides to the diagnosis of human genetic diseases," Biochimie 67:755 (1985). . Studencki and Wallace, "Allele-Specific Hybridization using Oligonucleotide Probes of Very High Specific Activity: Discrimination of the Human .beta..sup.A - and .beta..sup.S -Globin Genes," DNA 3:1 (1984). . Studencki et al., "Discrimination among the Human .beta..sup.A, .beta..sup.S, and .beta..sup.C -Globin Genes Using Allele-Specific Oligonucleotide Hybridization Probes," Human Genetics 37:42 (1985). . Harrington and Liener, "Functional domains within FEN-1 and RAD2 define a family of structure-specific endonucleases: implications for nucleotide excision repair," Genes and Develop. 8:1344 (1994). . Murante et al., "The Calf 5'- to 3'-Exonuclease Is Also an Endonuclease with Both Activities Dependent on Primers Annealed Upstream of the Point of Cleavage," J. Biol. Chem. 269:1191 (1994). . Kornberg, DNA Replication, W.H. Freeman and Co., San Francisco, pp. 127-139 (1980). . Tindall and Kunkell, Fidelity of DNA Synthesis by the Thermus aquaticus DNA Polymerase, Biochem. 27:6008 (1988). . Brutlag et al., "An Active Fragment of DNA Polymerase Produced By Proteolytic Cleavage," Biochem. Biophys. Res. Commun. 37:982 (1969). . Erlich et al., "Recent Advances in the Polymerase Chain Reaction," Science 252:1643 (1991). . Setlow and Kornberg, "Deoxyribonucleic Acid Polymerase: Two Distinct Enzymes in One Polypeptide," J. Biol. Chem. 247:232 (1972). . Gelfand, PCR Technology--Principles and Applications for DNA Amplification (H.A. Erlich, Ed.), Stockton Press, New York, p. 19 (1989). . Holland et al., "Detection of specific polymerase chain reaction product by utilizing the 5'-3' exonuclease activity of Thermus aquaticus DNA polymerase," Proc. Natl. Acad. Sci. USA 88:7276 (1991). . Lawyer et al., "Isolation, Characterization, and Expression in Escherichia coli of the DNA Polymerase Gene from Thermus aquaticus," J. Biol. Chem. 264:6427 (1989). . Akhmetzjanov and Vakhitov, "Molecular cloning and nucleotide sequence of the DNA polymerase gene from Thermus flavus," Nucl. Acids Res. 20:5839 (1992). . Setlow et al., "Deoxyribonucleic Acid Polymerase: Two Distinct Enzymes in One Polypeptide," J. Biol. Chem. 247:224 (1972). . Levine, "The Tumor Suppressor Genes," Annu. Rev. Biochem. 62:623 (1993). . Lane and Benchimol, "p53: oncogene or anti-oncogene," Genes Dev. 4:1 (1990). . Lowe et al., "p53-Dependent Apoptosis Modulates the Cytotoxicity of Anticancer Agents," Cell 74:957 (1995). . Hollstein, et al., "Database of p53 gene somatic mutations in human tumors and cell lines," Nucleic Acids Res. 22:3551 (1994). . Cariello et al., "Database and software for the analysis of mutations at the human p53 gene," Nucleic Acids Res. 22:3549 (1994). . Hollstein et al., "Database of p53 gene somatic mutations in human tumors and cell lines," Nucleic Acids Res. 22:3551 (1994). . Higuchi, R., In Ehrlich, H.A. (Ed.), PCR Technology: Principles and Applications for DNA Amplification, Stockton Press, New York, pp. 61-70 (1991). . Nelson and Long, "A General Method of SIte-Specific Mutagenesis Using a Modification of the Thermus aquaticus Polymerase Chain Reaction," Analytical Biochem. 180:147 (1989). . Altamirano et al., "Identification of Hepatitis C Virus Genotypes among Hospitalized Patients in British Columbia, Canada," J. Infect. Dis. 171:1034 (1995). . Kanai et al., "HCV genotypes in chronic hepatitis C and response to interferon," Lancet 339:1543 (1992). . Yoshioka et al., "Detection of Hepatitis C Virus by Polymerase Chain Reaction and Response to Interferon-.alpha. Therapy: Relationship to Genotypes of Hepatitis C Virus," Hepatology 16:293 (1992). . Okamoto et al., "Typing hepatitis C virus by polymerase chain reaction with type-specific primers: application to clinical surveys and tracing infectious sources," J. Gen. Virol. 73:673 (1992). . Frieden et al., "The Emergence of Drug-Resistant Tuberculosis in New York City," New Engl. J. Med. 328:521 (1993). . Hughes, Scrip Magazine May (1994). . Jacobs, Jr., "Multiple-Drug-Resistant Tuberculosis," Clin. Infect. Dis. 19:1 (1994). . Donnabella et al., "Isolation of the Gene for the .beta. Subunit of RNA Polymerase from Rifampicin-resistant Mycobacterium tuberculosis and Identification of New Mutations," Am. J. Respir. Dis. 11:639 (1994). . Jacobs, Jr. et al., "Rapid Assessment of Drug Susceptibilities of Mycobacterium tuberculosis by Means of Luciferase Reporter Phages," Science 260:819 (1993). . Shinnick and Jones in Tuberculosis: Pathogenesis, Protection and Control, Bloom, ed., American Society of Microbiology, Washington, D.C., pp. 517-530 (1994). . Yule, "Amplification-Based Diagnostics Target TB," Bio/Technology 12:1335 (1994). . Heym et al.,"Implications of multidrug resistance for the future of short-course chemotherapy of tuberculosis: a molecular study," Lancet 344:293 (1994). . Morris et al.,"Molecular Mechanisms of Multiple Drug Resistance in Clinical Isolates of Mycobacterium tuberculosis," J. Infect. Dis. 171:954 (1995). . Banerjee et al., "inhA, a Gene Encoding a Target for Isoniazid and Ethionamide in Mycobacterium tuberculosis," Science 263:227 (1994). . Woese, "Bacterial Evolution," Microbiological Reviews, vol. 51, No. 2 (1987). . Shibata, "Preparation of Nucleic Acid for Archival Material," in PCR: The Polymerase Chain Reaction, Mullis et al., eds. Birkhauser, Boston, pp. 47-54 (1994). . Saiki et al., "Primer-Directed Enzymatic Amplification of DNA with a Thermostable DNA Polymerase," Science 239:487 (1988). . Mullis and Faloona, "Specific Synthesis of DNA in Vitro via a Polymerase-Catalyzed Chain Reaction," Methods in Enzymology 155:335 (1987). . M. Bargseid et al., "A High Fidelity Thermostable DNA Polymerase Isolated from Pyrococcus furiosus," Strategies (Startagene, LaJolla, CA) 4:34 (1991). . Perler et al., "Intervening sequences in an Archaea DNA polymerase gene," Proc. Natl. Acad. Sci. USA 89:5577 (1992). . Kaledin et al., "Isolation and Properties of DNA Polymerase From the Extremely Thermophilic Bacterium Thermus flavus," Biokhimiya 46:1576 (1981). . Carballeira et al., "Purification of a Thermostable DNA Polymerase from Thermus thermophilus HB8, Useful in the Polymerase Chain Reaction," Biotechniques 9:276 (1990). . Myers et al., "Reverse Transcription and DNA amplification by a Thermus thermophilus DNA Polymerase," Biochem. 30:7661 (1991). . Ito et al., "Compilation and alignment of DNA polymerase sequences," Nucl. Acids Res. 19:4045 (1991). . Mathur et al., The DNA polymerase gene from the hyperthermophilic marine archaebacterium Pyrococcus furiosus, shows sequence homology with .alpha.-like DNA polymerases, Nucl. Acids Res. 19:6952 (1991). . Dunn et al., "Complete Nucleotide Sequence of Bacteriophage T7 DNA and the Locations of T7 Genetic Elements," J. Mol. Biol. 166:477 (1983). . Antao et al., "A thermodynamic study of unusually stable RNA and DNA hairpins," Nucl. Acids Res. 19:5901 (1991). . Stark, "Multicopy expression vectors carrying the lac repressor gene for regulated high-level expression of genes in Escherichia coli," Gene 5:255 (1987). . Studier and Moffatt, "Use of Bacteriophage T7 RNA Polymerase to Direct Selective High-level Expression of Cloned Genes," J. Mol. Biol. 189:113 (1986). . Sambrook et al., Molecular Cloning: A Laboratory Manual, Cold Spring Harbor Laboratory Press, Cold Spring Harbor, pp. 1.63-1.69 (1989). . Engelke, "Purification of Thermus Aquaticus DNA Polymerase Expressed in Escherichia coli," Anal. Biochem 191:396 (1990). . Copley and Boot, "Exonuclease Cycling Assay: An Amplified Assay for the Detection of Specific DNA Sequences," BioTechniques 13:888 (1992). . King, R.A., et al., "Non-random Distribution of Missense Mutations Within the Human Tyrosinase Gene in Type I (Tyrosinase-related)Oculocutaneous Albinism," Mol. Biol. Med. 8:19 (1991). . Giebel et al., "Organization and Nucleotide Sequences of the Human Tyrosinase Gene and a Truncated Tyrosinase-Related Segment," Genomics 9:435 (1991). . Spritz, "Molecular genetics of oculocutaneous albinism," Human Molecular Genetics 3:1469 (1994). . Giebel et al., "A Tyrosinase Gene Missense Mutation in Temperature-sensitive Type I Oculocutaneous Albinism," J. Clin. Invest. 87:1119 (1991). . Bouchard et al., "Induction of Pigmentation in Mouse Fibroblasts by Expression of Human Tyrosinase cDNA," J. Exp. Med. 169:2029 (1989). . Orkin and Kazazian, "The Mutation and Polymorphism of the Human .beta.-Globin Gene and its Surrounding DNA," Annu. Rev. Genet. 18:13 (1984). . Collins and Weissman, "The Molecular Genetics of Human Hemoglobin," Prog. Nucleic Acid Res. Mol. Biol. 31:315 (1984). . Lawn et al., "The Nucleotide Sequence of the Human .beta.-Globin Gene," Cell 21:647 (1980). . Orkin and Goff, "Nonsense and Frameshift Mutations in .beta..sup.0 -Thalassemia Detected in Cloned .beta.-Globin Genes," J. Biol. Chem. 256:9782 (1981). . Goldsmith et al., ""Silent" nucleotide substitution in a .beta..sup.+ -thalassemia globin gene activates splice site in coding sequence RNA," Proc. Natl. Acad. Sci. USA 80:2318 (1983). . Giddings et al., "An adaptive, object oriented strategy for base calling in DNA sequence analysis," Nucl. Acids Res. 21:4530 (1993). . Trivedi et al., "Selective Amplification of Simian Immunodeficiency Virus Genotypes after Intrarectal Inoculation of Rhesus Monkeys," Journal of Virology 68:7649 (1994). . Nugent et al., "Characterization of the Apurinic Endonuclease Activity of Drosophila Rrpl," Biochemistry, 32:11445 (1993). . Bardwell et al., "Specific Cleavage of Model Recombination and Repair Intermediates by the Yeast Rad1-Rad10 DNA Endonuclease," Science 265:2082 (1994). . Orkin et al., "Abnormal RNA processing due to the exon mutation of .beta..sup.E -globin gene," Nature, 300:768 (1982). . Spritz et al., "Base substitution in an intervening sequence of a .beta..sup.+ -thalassemic human globin gene," Proc. Natl. Acad. Sci. USA, 78:2455 (1981). . Baker et al., "Suppression of Human Colorectal Carcinoma Cell Growth by Wild-Type p53," Science 249:912 (1990). . Chen et al., "Genetic Mechanisms of Tumor Suppression by the Human p53 Gene," Science 250:1576 (1990). . Hollstein et al., "p53 Mutations in Human Cancers," Science 253:49 (1991). . Caron de Fromental and Soussi, "TP53 Tumor Suppressor Gene: A Model for Investigating Human Mutagenesis," Genes, Chromosomes and Cancer 4:1 (1992). . Inchauspe et al., "Use of Conserved Sequences from Hepatitis C Virus for the Detection of Viral RNA in Infected Sera by Polymerase Chain Reaction," Hepatology 14:595 (1991). . Miller et al., "The rpoB Gene of Mycobacterium tuberculosis," Antimicrob. Agents Chemother., 38:805 (1994). . Cockerill et al., "Rapid Identification of a Point Mutation of the Mycobacterium tuberculosis Catalase-Peroxidase (katG) Gene Associated with Isoniazid Resistance," J. Infect. Dis. 171:240 (1995). . Greisen et al., "PCR Primers and Probes for the 16S rRNA Gene of Most Species of Pathogenic Bacteria, Including Bacterial Found in Cerebrospinal Fluid," J. Clin. Microbiol. 32:335 (1994). . Widjojoatmondjo et al., "Rapid Identification of Bacteria by PCR-Single-Strand Conformation Polymorphisms," J. Clin. Microbiol. 32:3002 (1994). . Maidak et al., "The Ribosomal Database project," Nucleic Acids Res., 22:3485 (1994). . McConlogue et al., "Structure-independent DNA amplification by PCR using 7-deaza-2'-deoxyguanosine," Nucleic Acids Res. 16:20 (1988). . D.S. Sigman et al., "Chemical Nucleases," Chemical Reviews 93:2295-2316 (1993). . T.R. Cech et al., "Secondary Structure of the Tetrahymena Ribosomal RNA intervening sequence, Structural homology with fungal mitochondrial intervening sequences," Proc. Natl. Acad. Sci. USA 80:3093 (1983). . C.R. Woese et al., "Detailed Analysis of the Higher Order Structure of 16S Like Ribosomal Ribonucleic Acids," Microbiology Reviews 47:621 (1983). . Hoheisel et al., "On The Activities of Escherichia coli Exonuclease III," Anal. Biochem. 209:238-246 (1993). . R. Youil et al., "Screening for Mutations by Enzyme Mismatch Cleavage with T4 Endonuclease VII," Proc. Natl. Acad. Sci. USA (1995). . Murphy et al., "Use of the 5' Noncoding Region for Genotyping Hepatitis C Virus," J. Infect. Diseases 169:473 (1994). . Takada et al, "HCV genotypes in different countries," Lancet 339:808 (1992). . Belkum, "DNA Fingerprinting of Medically Important Microorganisms by Use of PCR," Clin. Microbiol. Rev. 7(2): 174-184 (1994). . Wilson et al., "Amplification of Bacterial 16S Ribosomal DNA with Polymerase Chain Reaction," J. Clin. Microbiol. 28(9):1942-1946 (1990). . Bingen et al., "Use of Ribotyping in Epidemiological Surveillance of Nosocomial Outbreaks," Clin. Microbiol. Rev. 7(3):311-327 (1994). . Tabor et al., Effect of Manganese Ions On The Incorporation of Dideoxynucleotides By Bacteriophage T7 DNA Polymerase and Escherichia coli DNA Polymerase 1, Proc. Natl. Acad. Sci. USA 86:4076-4080 (1989).. |
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