EP1588145A2

Methods, mixtures, kits and compositions pertaining to analyte determination

Abstract

This invention pertains to methods, kits and/or compositions for the determination of analytes by mass analysis using unique labeling reagents or sets of unique labeling reagents. The labeling reagents can be isomeric or isobaric and can be used to produce mixtures suitable for multiplex analysis of the labeled analytes.

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Projected expiry passed 27 January 2024, 2.7 years ago.

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105 claims: 35 independent, 70 dependent

  1. 1
    Claims of equivalent WO 2004070352 A2 CLAIMS We Claim:1. A method comprising: a) reacting two or more samples, each sample comprising one or more reactive analytes, with a different labeling reagent of a set of labeling reagents to thereby produce two or more differentially labeled samples each comprising one or more labeled analytes wherein the different labeling reagents of the set each comprise the formula: RP-X-LK-Y-RG or a salt thereof, wherein;i) RG is a reactive group that is a nucleophile or an electrophile and that is capable of reacting with one or more of the reactive analytes of the sample;ii) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each reagent of the set;iii) LK is a linker moiety that links the reactive group and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the reporters for the different labeling reagents of the set such that the aggregate gross mass of the reporter and linker combination is the same for each reagent of the set;iv) X is a bond between an atom of the reporter and an atom of the linker;v) Y is a bond between an atom of the linker and an atom of the reactive group, wherein, once the labeling reagent is reacted with the reactive analyte, bond Y links the linker to the analyte;and vi) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and b) mixing two or more of the differentially labeled samples, or a portion thereof, and optionally one or more calibration standards to thereby produce a sample mixture;wherein RP: i) has a gross mass of less than 250 daltons;and/or ii) does not substantially sub-fragment under conditions of dissociative energy applied to cause fragmentation of at least a portion of both bonds X and Y of a labeled analyte in a mass spectrometer;and/or iii) is not a polymer or is not a biological polymer.
  2. 2
    A method comprising:a) reacting two or more samples, each sample comprising one or more reactive analytes, with a different labeling reagent of a set of labeling reagents to thereby produce two or more differentially labeled samples each comprising one or more labeled analytes wherein the different labeling reagents of the set each comprise the formula: RP-X-LK-Y-RG or a salt thereof, wherein;i) RG is a reactive group that is a nucleophile or an electrophile and that is capable of reacting with one or more of the reactive analytes of the sample;ii) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each reagent of the set;iii) LK is a linker moiety that links the reactive group and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the reporters for the different labeling reagents of the set such that the aggregate gross mass of the reporter and linker combination is the same for each reagent of the set;iv) X is a bond between an atom of the reporter and an atom of the linker;v) Y is a bond between an atom of the linker and an atom of the reactive group, wherein, once the labeling reagent is reacted with the reactive analyte, bond Y links the linker to the analyte;and vi) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and b) mixing two or more of the differentially labeled samples, or a portion thereof, and optionally one or more calibration standards to thereby produce a sample mixture;wherein the linker LK undergoes neutral loss under conditions of applied dissociative energy that causes the fragmentation of both bonds X and Y in a mass spectrometer.
  3. 3
    A method comprising:a) reacting two or more samples, each sample comprising one or more reactive analytes, with a different labeling reagent of a set of labeling reagents to thereby produce two or more differentially labeled samples each comprising one or more labeled analytes wherein the different labeling reagents of the set each comprise the formula: RP-X-LK-Y-RG or a salt thereof, wherein;i) RG is a reactive group that is a nucleophile or an electrophile and that is capable of reacting with one or more of the reactive analytes of the sample;ii) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each reagent of the set;iii) LK is a linker moiety that links the reactive group and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the reporters for the different labeling reagents of the set such that the aggregate gross mass of the reporter and linker combination is the same for each reagent of the set;iv) X is a bond between an atom of the reporter and an atom of the linker;v) Y is a bond between an atom of the linker and an atom of the reactive group, wherein, once the labeling reagent is reacted with the reactive analyte, bond Y links the linker to the analyte;and vi) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and b) mixing two or more of the differentially labeled samples, or a portion thereof, and optionally one or more calibration standards to thereby produce a sample mixture;wherein, under conditions of dissociative energy applied in a mass spectrometer, the fragmentation of one of bonds X or Y induces the fragmentation of the other of bonds X or Y.
  4. 4
    A method comprising:a) reacting two or more samples, each sample comprising one or more reactive analytes, with a different labeling reagent of a set of labeling reagents to thereby produce two or more differentially labeled samples each comprising one or more labeled analytes wherein the different labeling reagents of the set each comprise the formula: RP-X-LK-Y-RG or a salt thereof, wherein;i) RG is a reactive group that is a nucleophile or an electrophile and that is capable of reacting with one or more of the reactive analytes of the sample;ii) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each reagent of the set;iii) LK is a linker moiety that links the reactive group and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the reporters for the different labeling reagents of the set such that the aggregate gross mass of the reporter and linker combination is the same for each reagent of the set;iv) X is a bond between an atom of the reporter and an atom of the linker;v) Y is a bond between an atom of the linker and an atom of the reactive group, wherein, once the labeling reagent is reacted with the reactive analyte, bond Y links the linker to the analyte;and vi) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and b) mixing two or more of the differentially labeled samples, or a portion thereof, and optionally one or more calibration standards to thereby produce a sample mixture;wherein: i) under conditions of dissociative energy applied in a mass spectrometer, bond X is less prone to fragmentation as compared with bond Y;and/or ii) under conditions of dissociative energy applied in a mass spectrometer, bond X is less prone to fragmentation as compared with the peptide bond of a Z-pro amino acid dimer or Z-asp amino acid dimer, wherein Z is any natural amino acid, pro is proline and asp is aspartic acid.
  5. 5
    A method comprising:a) reacting two or more samples, each sample comprising one or more reactive analytes, with a different labeling reagent of a set of labeling reagents to thereby produce two or more differentially labeled samples each comprising one or more labeled analytes wherein the different labeling reagents of the set each comprise the formula: < RP-X-LK-Y-RG or a salt thereof wherein;i) RG is a reactive group that is an electrophile and that is capable of reacting with one or more of the reactive analytes of the sample;ii) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each reagent of the set;iii) LK is a linker moiety that links the reactive group and the reporter group, wherein: a) the mass of the linker compensates for the difference in gross mass between the reporters for the different labeling reagents of the set such that the aggregate gross mass of the reporter and linker combination is the same for each reagent of the set;and b) the linker comprises at least one heavy atom isotope and has the formula: wherein R 1 is the same or different and is an alkyl group comprising one to eight carbon atoms which may optionally contain a heteroatom or a substituted or unsubstituted aryl group wherein the carbon atoms of the alkyl and aryl groups independently comprise linked hydrogen, deuterium and /or fluorine atoms;iv) X is a bond between an atom of the reporter and an atom of the linker;v) Y is a bond between an atom of the linker and an atom of the reactive group, wherein, once the labeling reagent is reacted with the reactive analyte, bond Y links the linker to the analyte;and b) mixing two or more of the differentially labeled samples, or a portion thereof, and optionally one or more calibration standards to thereby produce a sample mixture.
  6. 6
    The method of any one of claims 1 to 5, further comprising:c) performing a first mass spectrometric analysis on the sample mixture, or a fraction thereof;d) treating selected ions of labeled analytes from the first mass spectrometric analysis to dissociative energy levels to thereby form ionized reporter moieties and ionized daughter fragment ions of at least some of the selected ions;and e) performing a second mass analysis of the selected ions, the ionized reporter moieties and the daughter fragment ions, or a fraction thereof.
  7. 10
    The method of any one of claims 1 to 5, wherein the two or more samples are the products of an enzymatic digestion reaction.
  8. 13
    The method of any one of claims 1 to 5, wherein each sample is a crude or processed cell lysate, a body fluid, a tissue extract or a cell extract.
  9. 14
    The method of any one of claims 1 to 5, wherein each sample is a fraction from a separations process.
  10. 17
    The method of any one of claims 1 to 5, wherein the one or more analytes are proteins, nucleic acid molecules, carbohydrates, lipids, steroids or small molecules of less than 1500 daltons.
  11. 18
    The method of any one of claims 1 to 5, wherein the one or more of the analytes are peptides.
  12. 21
    The method of any one of claims 1 to 5, wherein the reactive group of each reagent of the set is prepared in-situ for reaction with the reactive analytes.
  13. 24
    The method of any one of claims 1 to 5, wherein the reactive group of each reagent of the set is an amine reactive active ester group.
  14. 26
    The method of any one of claims 1 to 4, wherein the reactive group of each reagent of the set is a thiol reactive electrophilic group.
  15. 28
    The method of any one of claims 1 to 4, wherein the reactive group of each reagent of the set is a hydroxyl reactive electrophilic group.
  16. 29
    The method of any one of claims 1 to 4, wherein the reactive group of each reagent is a nucleophile selected from the group consisting of an amine group, a hydroxyl group or a thiol group.
  17. 30
    The method of any one of claims 1 to 5, wherein the reporter is a substituted or unsubstituted morpholine, piperidine or piperazine compound, or a salt thereof.
  18. 31
    The method of any one of claims 1 to 5 wherein the reporter is a carboxylic acid, sulfonic acid or phosphoric acid group containing compound, or a salt thereof.
  19. 32
    The method of any one of claims 1 to 5, wherein the reporter moiety does not substantially sub-fragment under conditions used to determine the analyte.
  20. 33
    The method of any one of claims 2 to 5, wherein the reporter moiety is not a biological polymer.
  21. 34
    The method of any one of claims 2 to 5, wherein the reporter moiety is not a polymer.
  22. 35
    The method of any one of claims 1 to 5, wherein the linker is a carbonyl or thiocarbonyl group.
  23. 36
    The method of any one of claims 1 to 4, wherein the linker is a polymer or biopolymer moiety.
  24. 38
    The method of any one of claims 1 to 5, wherein the one or more differentially labeled analytes each comprise an isomeric label that identifies the sample from which it originated.
  25. 39
    The method of any one of claims 1 to 5, wherein the one or more differentially labeled analytes each comprise an isobaric label that identifies the sample from which it originated.
  26. 50
    The method of any of claims 1 to 5, wherein each different labeling reagent of the set is support bound and is linked to the support through a cleavable linker such that each different sample is reacted with a support carrying a different labeling reagent;and the method further comprises, before performing step (b);i) optionally washing the resin to remove components of the sample that do not react with the reactive group of the labeling reagent;and ii) cleaving the cleavable linker to thereby collect the two or more differentially labeled samples, each sample comprising one or more labeled analytes wherein the labeled analytes associated with a particular sample are identifiable and/or quantifiable by the unique reporter linked thereto.
  27. 55
    The method of any of claims 1 to 5, further comprising:c) digesting each sample with at least one enzyme to partially, or fully, degrade components of the sample prior to performing step (a).
  28. 58
    The method of any of claims 1 to 5, wherein the method further comprises:c) separating the sample mixture.
  29. 63
    The method of any of claims 1 to 5, wherein the method further comprises:c) digesting each sample with at least one enzyme to partially, or fully, degrade components of the sample prior to performing step (a);and d) separating the sample mixture.
  30. 93
    A mixture comprising at least two labeled analytes, wherein each of the two labeled analytes originates from a different sample combined to form the mixture and each comprises the formula:RP-X-LK-Y-Analyte or a salt thereof, wherein;a) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each sample;b) LK is a linker moiety that links the analyte and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the different reporters such that the aggregate gross mass of the reporter and linker combination is the same for each labeled analyte;c) X is a bond between an atom of the reporter and an atom of the linker;d) Y is a bond between an atom of the linker and an atom of the analyte;and e) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and wherein RP: i) has a gross mass of less than 250 daltons;and /or ii) does not substantially sub-fragment under conditions of dissociative energy applied to cause fragmentation of at least a portion of both bonds X and Y of a labeled analyte in a mass spectrometer;and/or iii) is not a polymer or is not a biological polymer. 94. A mixture comprising at least two labeled analytes, wherein each of the two labeled analytes originates from a different sample combined to form the mixture and each comprises the formula: RP-X-LK-Y-Analyte or a salt thereof, wherein;a) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each sample;b) LK is a linker moiety that links the analyte and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the different reporters such that the aggregate gross mass of the reporter and linker combination is the same for each labeled analyte;c) X is a bond between an atom of the reporter and an atom of the linker;d) Y is a bond between an atom of the linker and an atom of the analyte;and e) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and wherein the linker LK undergoes neutral loss under conditions of applied dissociative energy that causes the fragmentation of both bonds X and Y in a mass spectrometer. 95. A mixture comprising at least two labeled analytes, wherein each of the two labeled analytes originates from a different sample combined to form the mixture and each comprises the formula: RP-X-LK-Y-Analyte or a salt thereof, wherein;a) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each sample;b) LK is a linker moiety that links the analyte and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the different reporters such that the aggregate gross mass of the reporter and linker combination is the same for each labeled analyte;c) X is a bond between an atom of the reporter and an atom of the linker;d) Y is a bond between an atom of the linker and an atom of the analyte;and e) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and wherein, under conditions of dissociative energy applied in a mass spectrometer, the fragmentation of one of bonds X or Y induces the fragmentation of the other of bonds X or Y. A mixture comprising at least two labeled analytes, wherein each of the two labeled analytes originates from a different sample combined to form the mixture and each comprises the formula: RP-X-LK-Y-Analyte or a salt thereof, wherein;a) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each sample;b) LK is a linker moiety that links the analyte and the reporter group, wherein the mass of the linker compensates for the difference in gross mass between the different reporters such that the aggregate gross mass of the reporter and linker combination is the same for each labeled analyte;c) X is a bond between an atom of the reporter and an atom of the linker;d) Y is a bond between an atom of the linker and an atom of the analyte;and e) bonds X and Y fragment in at least a portion of the labeled analytes when subjected to dissociative energy levels;and wherein: i) under conditions of dissociative energy applied in a mass spectrometer, bond X is less prone to fragmentation as compared with bond Y;and/or ii) under conditions of dissociative energy applied in a mass spectrometer, bond X is less prone to fragmentation as compared with the peptide bond of a Z-pro amino acid dimer or Z-asp amino acid dimer, wherein Z is any natural amino acid, pro is proline and asp is aspartic acid.
  31. 94
    97. A mixture comprising at least two labeled analytes, wherein each of the two labeled analytes originates from a different sample combined to form the mixture and each comprises the formula:RP-X-LK-Y-Analyte or a salt thereof wherein;a) RP is a reporter moiety that comprises a fixed charge or that is ionizable, wherein the gross mass of each reporter is different for each sample;b) LK is a linker moiety that links the reactive group and the reporter group, wherein: i) the mass of the linker compensates for the difference in gross mass between the reporters for the different labeling reagents of the set such that the aggregate gross mass of the reporter and linker combination is the same for each reagent of the set;and ii) the linker comprises at least one heavy atom isotope and has the formula: wherein R 1 is the same or different and is an alkyl group comprising one to eight carbon atoms which may optionally contain a heteroatom or a substituted or unsubstituted aryl group wherein the carbon atoms of the alkyl and aryl groups independently comprise linked hydrogen, deuterium and /or fluorine atoms;c) X is a bond between an atom of the reporter and an atom of the linker;d) Y is a bond between an atom of the linker and an atom of the analyte.
  32. 95
    98. The mixture of any one of claims 93 to 97, wherein one or more of the analytes are peptides.
  33. 96
    99. The mixture of any one of claims 93 to 97, wherein one or more of the analytes are proteins.
  34. 97
    100. The mixture of any one of claims 93 to 97, wherein one or more of the analytes are nucleic acid molecules.
  35. 98
    101. The mixture of any one of claims 93 to 97, wherein the reporter is a substituted or unsubstituted morpholine, piperidine or piperazine compound, or a salt thereof.
  36. 99
    102. The mixture of any one of claims 93 to 97, wherein the reporter is a carboxylic acid, sulfonic acid or phosphoric acid group containing compound, or a salt thereof.
  37. 100
    103. The mixture of any one of claims 93 to 97, wherein the linker is a carbonyl or thiocarbonyl group.
  38. 101
    104. The mixture of any one of claims 93 to 97, wherein the at least two labeled analytes each comprise an isomeric label.
  39. 102
    105. The mixture of any one of claims 93 to 97, wherein the at least two labeled analytes each comprise an isobaric label.
Independent claims39