Claims
- 1. A release tag compound comprising Rx, Re and M wherein:
Rx is a reactive group; Re is a release group; and M is a nonvolatile mass label comprising a synthetic polymer or a biopolymer detectable by mass spectrometry.
- 2. The compound of claim 1, wherein the mass label comprises a biopolymer.
- 3. The compound of claim 2, wherein the biopolymer comprises one or more monomer units, wherein each monomer unit is separately and independently selected from the group consisting of an amino acid, a nucleic acid, and a saccharide.
- 4. The compound of claim 3, wherein each monomer comprises an amino acid.
- 5. The compound of claim 3, wherein each monomer comprises a nucleic acid.
- 6. The compound of claim 1, wherein the mass label comprises a synthetic polymer.
- 7. The compound of claim 6, wherein the synthetic polymer comprises polyethylene glycol, polyvinyl phenol, polypropylene glycol, polymethyl methacrylate, and derivatives thereof.
- 8. The compound of claim 7, wherein the synthetic polymer comprises polyethylene glycol.
- 9. The compound of claim 1, wherein the release group comprises a chemically cleavable linkage.
- 10. The compound of claim 9, wherein the chemically cleavable linkage comprises a modified base, a modified sugar, a disulfide bond, a chemically cleavable group incorporated into the phosphate backbone, or a chemically cleavable linker.
- 11. The compound of claim 10, wherein the chemically cleavable linkage further comprises a moiety cleavable by acid, base, oxidation, reduction, heat, light, metal ion catalyzed, displacement, or elimination chemistry.
- 12. The compound of claim 10, wherein the chemically cleavable group is incorporated into the phosphate backbone.
- 13. The compound of claim 12, wherein the chemically cleavable group comprises dialkoxysilane, 3′-(S)-phosphorothioate, 5′-(S)-phosphorothioate, 3′-(N)-phosphoroamidate, or 5′-(N)-phosphoroamidate.
- 14. The compound of claim 10, wherein the chemically cleavable linkage comprises a modified sugar.
- 15. The compound of claim 14, wherein the modified sugar comprises ribose.
- 16. The compound of claim 10, wherein the chemically cleavable linkage comprises a disulfide bond.
- 17. The compound of claim 1, wherein the reactive group comprises a biomolecule capable of specific molecular recognition.
- 18. The compound of claim 17, wherein the biomolecule capable of specific molecular recognition comprises a polypeptide.
- 19. The compound of claim 18, wherein the polypeptide is selected from the group consisting essentially of an antibody, an enzyme, a receptor, a regulatory protein, a nucleic acid-binding protein, a hormone, and a protein product of a display method.
- 20. The compound of 19, wherein the polypeptide comprises a product of a phage display method or a bacterial display method.
- 21. The compound of claim 10, wherein the polypeptide comprises an antibody or an enzyme.
- 22. The compound of claim 17, wherein the biomolecule capable of specific molecular recognition comprises a polynucleic acid.
- 23. The compound of claim 22, wherein the polynucleic acid comprises an oligonucleotide.
- 24. The compound of claim 1, wherein Rx and Re are the same.
- 25. The compound of claim 1, wherein Re is contained within Rx.
- 26. The compound of claim 1, wherein Re is cleavable by an enzyme.
- 27. The compound of claim 26, wherein Re is a phosphodiester or amide linkage.
- 28. The compound of claim 26, wherein the enzyme comprises a nuclease
- 29. The compound of claim 28, wherein the nuclease comprises an exonuclease.
- 30. The compound of claim 29, wherein the exonuclease is specific for double-stranded polynucleic acids.
- 31. The compound of claim 29, wherein the exonuclease is specific for single-stranded polynucleic acids.
- 32. The compound of claim 28, wherein the nuclease comprises a restriction endonuclease.
- 33. The compound of claim 32, wherein the restriction endonuclease comprises a Type IIS restriction endonuclease.
- 34. The compound of claim 32, wherein the restriction endonuclease comprises a Type II restriction endonuclease.
- 35. The compound of claim 27, wherein the enzyme comprises a protease.
- 36. The compound of claim 35, wherein the protease comprises an endoproteinase.
- 37. The compound of claim 1, wherein more than one mass label is incorporated.
- 38. The compound of claim 1, wherein the mass label has a molecular weight greater than about 500 Daltons.
- 39. A release tag compound comprising Rx, Re and M, wherein:
Rx is a reactive group comprising mass-labeled nucleotides; Re is a release group; and M is a mass label detectable by mass spectrometry.
- 40. A release tag compound comprising Rx, Re and M, wherein:
Rx is a reactive group comprising nucleoside phosphoramidites; Re is a release group; and M is a mass label detectable by mass spectrometry.
- 41. A release tag compound comprising Rx, Re and M, wherein:
Rx is a reactive group comprising a first oligonucleotide having a nucleotide or a second oligonucleotide attached thereto; Re is a release group; and M is a mass label detectable by mass spectrometry.
- 42. The compound of claim 41, wherein the nucleotide added after hybridization comprises a chain terminating modification.
- 43. The compound of claim 41, wherein the nucleotide or second oligonucleotide further comprise a functional group capable of being immobilized on a solid support.
- 44. The compound of claim 43, wherein the functional group comprises a biotin, or digoxigenin.
- 45. A release tag compound comprising Rx, Re and M, wherein:
Rx is an oligonucleotide comprising a nuclease blocking moiety; Re is a release group; and M is a mass label detectable by mass spectrometry.
- 46. The compound of claim 45, wherein the nuclease blocking moiety is selected from the group consisting essentially of a phosphorothioate, an alkylsilydiester, a boranophosphate, a methylphosphonate, and a peptide nucleic acid.
- 47. A release tag compound comprising Rx, Re and M, wherein:
Rx is a double-stranded oligonucleotide comprising a restriction endonuclease recognition site; Re is a release group comprising a phosphodiester linkage capable of being cleaved by a restriction endonuclease; and M is a mass label detectable by mass spectrometry.
- 48. The compound of claim 47, wherein Rx further comprises a modified nucleotide.
- 49. The compound of claim 48, wherein comprises a portion of Rx.
- 50. The compound of claim 47, wherein Rx further comprises a self-complementary oligonucleotide hairpin.
- 51. A release tag compound comprising Rx, Re and M, wherein:
Rx is a double-stranded oligonucleotide; Re is a chemically cleavable release group; and M is a mass label detectable by mass spectrometry;
wherein Re is located within Rx; and wherein cleavage at the chemically cleavable release group is inhibited by the presence of a double-stranded oligonucleotide at said release group.
- 52. The compound of claim 51, wherein the chemically cleavable release group comprises 3′-(S)-phosphorothioate, 5′-(S)-phosphorothioate, 3′-(N)-phosphoroamidate, or 5′-(N)-phosphoroamidate, or ribose.
- 53. The compound of claim 51, wherein hybridization of a portion of Rx to a target nucleic acid renders a portion of Rx single-stranded at Re.
- 54. A set of release tag compounds, said set comprising one or more release tag compounds for detecting a particular target nucleic acids, each release tag compound comprising Rx, Re and M, wherein:
Rx is an oligonucleotide comprising a variable region and an invariant region; Re is a release group; and M is a mass label detectable by mass spectrometry;
wherein said invariant and variable regions react with the target nucleic acid.
- 55. The set of claim 54, wherein the mass label of at least one release tag compound identifies a specific sequence within the variable region.
- 56. The set of claim 55, wherein the mass label for each release tag compound uniquely identifies a different sequence within the variable region.
- 57. The set of claim 54, wherein a combination of the mass labels of two or more release tag compounds identifies a different sequence within the variable region.
- 58. The set of claim 54, wherein Rx further comprises a nucleotide or oligonucleotide attached thereto after hybridization to the target nucleic acid.
- 59. The set of claim 58, wherein the added nucleotide or oligonucleotide comprises Re′ and M′, wherein:
Re′ is a release group; and M′ is a mass label detectable by mass spectrometry.
- 60. The set of claim 58, wherein the added nucleotide comprises a chain terminating moiety.
- 61. The set of claim 58, wherein the added nucleotide or oligonucleotide further comprises a functional group capable of being immobilized on a solid support.
- 62. The set of claim 61, wherein the functional group comprises a biotin or digoxigenin.
- 63. A method for multiplexing the detection of a target molecule comprising:
(a) obtaining a plurality of probes, each comprising a compound of claim 1;(b) contacting the target molecule with the plurality of probes to produce probe:target molecule complexes, wherein the target molecule is attached to the reactive group of the probe; (c) releasing the mass labels from the probe:target molecule complexes to produce released mass labels; and (d) determining the mass of the released mass labels by mass spectrometry, wherein each reactive group in a probe:target molecule complex is associated with a unique set of mass labels.
- 64. The method of claim 63, wherein a plurality of target molecules is contacted with the plurality of probes.
- 65. The method of claim 63, wherein the set of mass labels are attached to the same probe.
- 66. The method of claim 63, wherein the set of mass labels are attached to different probes.
- 67. The method of claim 63, wherein the target molecule is immobilized onto a solid support.
- 68. The method of claim 66, wherein a plurality of target molecules are immobilized onto the solid support at spaced locations.
- 69. The method of claim 63, wherein the target molecule is selected from the group consisting essentially of a polynucleotide, an antigen, a ligand, a polypeptide, a carbohydrate, and a lipid.
- 70. The method of claim 69, wherein the target molecule comprises a polynucleotide.
- 71. The method of claim 69, wherein the target molecule comprises a polypeptide.
- 72. The method of claim 63, wherein the reactive group comprises a biomolecule capable of specific molecular recognition.
- 73. The method of claim 72, wherein the reactive group comprises a polypeptide.
- 74. The method of claim 72, wherein the polypeptide is selected from the group consisting essentially of an antibody, an enzyme, a receptor, a regulatory protein, a nucleic-acid-binding protein, a hormone, or a protein product of a display methods.
- 75. The method of claim 74, wherein the polypeptide comprises an antibody.
- 76. The method of claim 74, wherein the polypeptide comprises a product of a phage display method or a bacterial display method.
- 77. The method of claim 72, wherein the reactive group comprises a polynucleotide or an oligonucleotide.
- 78. The method of claim 63, wherein the unique set of mass labels comprises a mass label that indicates the presence of a specified component within the reactive group.
- 79. The method of claim 78, wherein the mass label indicates the presence of the specified component at a specified location within the reactive group.
- 80. The method of claim 79, wherein a reactive group comprising n specified components is associated with a unique set of mass labels having (n) members.
- 81. The method of claim 80, wherein (n) is from 1 to 1000.
- 82. The method of claim 79, wherein a reactive group comprising n specified components is associated with a unique set of mass labels having y members wherein n is less than y!/; and
wherein x comprises the number of mass labels used per active group.
- 83. The method of claim 79, wherein the plurality of probes each comprise a known reactive group having a known set of mass labels.
- 84. The method of claim 83, wherein the plurality of probes are prepared by combinatorial synthesis.
- 85. The method of claim 79, wherein the plurality of target molecules comprise a known chemical structure.
- 86. The method of claim 63, wherein the target molecule comprises an expressed gene product.
- 87. The method of claim 86, wherein the expressed gene product is derived from a cloned mRNA.
- 88. The method of claim 63, wherein the target molecule comprises a cloned genomic DNA.
- 89. A method of monitoring gene expression comprising:
(a) obtaining a plurality of probes, each probe comprising a compound of claim 1;(b) obtaining a plurality of target nucleic acids with the plurality of probes to produce probe:target nucleic acid complexes; (c) selectively releasing the mass labels from the probe:target nucleic acid complexes, wherein the complexes are in solution; and (d) determining the mass of the released mass labels by mass spectrometry.
- 90. The method of claim 89, herein the target nucleic acids comprise mRNA or first-strand cDNA.
- 91. The method of claim 89, wherein the target nucleic acids comprise amplified nucleic acid products.
- 92. The method of claim 89, wherein the amplification is effected by PCR, rtPCR, LCR, Qbeta Replicase, SDA, CPR, TAS, NASBA, or multiple rounds of RNA transcription or some combination thereof.
- 93. A method of monitoring gene expression comprising:
(a) obtaining an mRNA pool; (b) amplifying a subset of the mRNA pool to produce a plurality of amplified nucleic acid products; (c) obtaining a plurality of probes, each probe comprising a compound of claim 1;(d) contacting the plurality of amplified nucleic acid products with the plurality of probes to produce probe; amplified nucleic acid product complexes; (e) selectively releasing the mass label from the probe:amplified nucleic acid product complexes to produce released mass labels; and (f) determining the mass of the released mass labels by mass spectrometry.
- 94. The method of claim 93, wherein at least one probe is capable of being immobilized onto a solid support.
- 95. The method of claim 93, wherein at least one amplified nucleic acid product is capable of being immobilized onto a solid support.
- 96. A method for detecting a target molecule, said method comprising the steps of:
(a) contacting a target molecule with a probe comprising a compound of claim 1 to produce probe:target molecule complexes and unreacted probes; (b) releasing the mass labels from the probe:target molecule complexes to produce released mass labels; (c) selectively desorbing the released mass label from an organic matrix to produce desorbed mass labels; and (d) determining the mass of the desorbed mass label by mass spectrometry.
- 97. The method of claim 96, wherein the organic matrix comprises 2,5-dihydroxybenzoic acid, sinapinic acid, or alpha-cyano-4-hydroxycinnamic acid.
- 98. A method for detecting the presence of a target nucleic acid molecule, said method comprising:
(a) obtaining a probe comprising a compound of claim 1;(b) contacting the probe to a target nucleic acid molecule to produce probe:nucleic acid molecule complexes; (c) mass modifying the probe:nucleic acid molecule complexes by attaching a nucleotide or oligonucleotide to the probe to produce mass modified mass labels; (d) releasing the mass modified mass labels; and (e) determining the mass of the mass-modified mass labels by mass spectrometry.
- 99. A method for detecting specific biomolecules in an enzyme-linked affinity assay comprising
(a) obtaining a substrate; (b) contacting the target molecule with an affinity ligand-enzyme conjugate to produce an affinity ligand-enzyme conjugate:target molecule complex; (c) contacting the affinity ligand-enzyme conjugate:target molecule complex with the substrate to produce a mass modified product; and (d) determining the mass of the mass modified product by mass spectrometry.
- 100. The method of claim 99, wherein the enzyme is a restriction endonuclease.
- 101. The method of claim 100, further comprising a plurality of restriction endonuclease conjugates.
- 102. The method of claim 100, wherein the substrate comprises a restriction site.
- 103. The method of claim 99, wherein the affinity ligand is a biomolecule capable of specific molecular recognition.
- 104. The method of claim 103, wherein the affinity ligand is a polypeptide.
- 105. The method of claim 104, wherein the polypeptide is selected from the group consisting essentially of an antibody, an enzyme, a receptor, a regulatory protein, a nucleic acid-binding protein, a hormone, or a protein product of a display method.
- 106. The method of claim 105, wherein the polypeptide comprises a product of a phage display method or a bacterial display method.
- 107. The method of claim 105, wherein the polypeptide comprises an antibody.
- 108. The method of claim 103, wherein the affinity ligand is a polynucleic acid.
- 109. The method of claim 99, wherein the enzyme is a protease.
- 110. The method of claim 109, wherein the substrate is a polypeptide.
- 111. A method of determining the identity of a nucleotide at a single nucleotide polymorphism site, the method comprising the steps of:
(a) obtaining at least one probe comprising a compound of claim 1 with a reactive group capable of hybridizing to a target nucleic acid containing a single nucleotide polymorphism site; (b) hybridizing the probe to the target nucleic acid to produce a probe:target nucleic acid complex; (c) selectively releasing a mass label to obtain a released mass label, and; (d) determining the mass of the released mass label by mass spectrometry, wherein the identity of the nucleotide at the single nucleotide polymorphism site corresponds to the mass of the released mass label.
- 112. The method of claim 111, wherein the probe is obtained by hybridizing the reactive group to the target nucleic acid to produce a reactive group:target nucleic acid complex and extending the reactive group by the addition of one or more added nucleotides.
- 113. The method of claim 112, wherein at least one added nucleotide is mass-labeled.
- 114. The method of claim 111, further comprising a set of probes having an invariant region and a variant region, wherein the invariant region is capable of hybridizing to a region immediately adjacent to a single nucleotide polymorphism site and wherein at least one member of the set of probes contains a variable region complementary to the nucleotide at the single nucleotide polymorphism site.
- 115. A method of determining the identity of a plurality of nucleotides at a plurality of single nucleotide polymorphism sites, the method comprising the steps of:
(a) obtaining a plurality of probes each comprising a reactive group capable of hybridizing to a target nucleic acid containing a single nucleotide polymorphism site; (b) hybridizing the probes to one or more target nucleic acids to produce one or more probe:target nucleic acid complexes; (c) selectively releasing a plurality of mass labels to obtain released mass labels, and; (d) determining the mass of the released mass labels by mass spectrometry, wherein the identity of the nucleotide at each single nucleotide polymorphism site corresponds to the mass of a released mass label.
- 116. The method of claim 115, wherein one or more probes are obtained by hybridizing a reactive group to a target nucleic acid to produce a reactive group:target nucleic acid complex and extending the reactive group by the addition of one or more added nucleotides.
- 117. The method of claim 116, wherein at least one added nucleotide is mass-labeled.
- 118. The method of claim 115, further comprising a set of probes having an invariant region and a variant region, wherein the invariant region is capable of hybridizing to a region immediately adjacent to a single nucleotide polymorphism site and wherein at least one member of the set of probes contains a variable region complementary to the nucleotide at the single nucleotide polymorphism site.
- 119. The method of detecting a single-stranded nucleic acid target molecule, said method comprising the steps of:
(a) obtaining a double-stranded nucleic acid probe comprising a reactive group, a release group and a nonvolatile mass label, wherein the double-stranded probe further comprises a complementary strand and a mass-labeled strand, and wherein the mass-labeled strand further comprises a nonvolatile mass label and a release group; (b) obtaining a single-stranded target molecule; (c) contacting the single-stranded target with the double-stranded probe to produce a complementary strand:target molecule complex and a single stranded mass-labeled strand; (d) selectively releasing the mass label from the single-stranded mass-labeled strand; (e) determining the mass of the mass label by mass spectrometry.
- 120. A method for multiplexing the detection of at least one single stranded target molecule, said method comprising the steps of:
(a) obtaining a plurality of double-stranded probes, each comprising a compound of claim 1, wherein each of the double-stranded probes further comprise a complementary strand and a mass-labeled strand, and wherein the mass-labeled strand further comprises a nonvolatile mass label and a release group; (b) obtaining at least one single-stranded target molecule; (c) contacting the target molecule with the plurality of probes to produce a complementary strand:target molecule complex and a single stranded mass-labeled strand; (d) selectively releasing the mass label from the single-stranded mass-labeled strand; (e) determining the mass of the mass label by mass spectrometry, wherein each reactive group of the double-stranded probe is associated with a unique set of mass labels.
- 121. A method of preparing a release tag compound, the method comprising:
(a) obtaining a target nucleic acid sequence; (b) synthesizing a reactive group capable of hybridizing to the target nucleic acid sequence; (c) hybridizing the reactive group to the target nucleic acid sequence; and (d) extending the reactive group to produce a release tag compound complementary to the target nucleic acid sequence, wherein the release tag compound comprises a reactive group and release group and a mass-labeled detectable by mass spectrometry.
- 122. The method of claim 121, further comprising amplifying the release tag compound by polymerase chain reaction.
RELATED APPLICATION
[0001] This application is a continuation of U.S. application Ser. No. 08/988,024, filed Dec. 10, 1997, to MONFORTE, JOSEPH A., BECKER, CHRISTOPHER H., POLLART, DANIEL J. and SHALER, THOMAS A., entitled “RELEASABLE NONVOLATILE MASS-LABEL MOLECULES.” Benefit of priority under 35 U.S.C. §119(e) is also claimed to U.S. provisional application Serial No. 60/033,037, filed Dec. 10, 1996, and Serial No. 60/046,719, filed May 16, 1997. The subject matter of each of these applications is incorporated by reference in its entirety.
Government Interests
[0002] The government may own rights in subject matter herein pursuant to Cooperative Agreement No. 70NANB5H1029 from the United States Department of Commerce, Advanced Technology Program.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60033037 |
Dec 1996 |
US |
|
60046719 |
May 1997 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
08988024 |
Dec 1997 |
US |
Child |
10202189 |
Jul 2002 |
US |