US20020037532A1

Affinity selected signature peptides for protein identification and quantification

Claim Score by NHIP

Read claim 59, the broadest

Abstract

A method for protein identification in complex mixtures that utilizes affinity selection of constituent proteolytic peptide fragments unique to a protein analyte. These "signature peptides" function as analytical surrogates. Mass spectrometric analysis of the proteolyzed mixture permits identification of a protein in a complex sample without purifying the protein or obtaining its composite peptide signature.

US20020037532A1, drawing sheet 1
Sheet 1 of 21

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Projected expiry passed 4 May 2021, 5.4 years ago.

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99 claims: 13 independent, 86 dependent

  1. 1
    A method for detecting a difference in the concentration of a protein present in a first sample and in a second sample, each sample comprising a plurality of proteins, the method comprising:covalently attaching a first isotopic variant of a chemical moiety to a protein in the first sample to yield at least one first isotopically labeled protein;covalently attaching a second isotopic variant of the chemical moiety to a protein in the second sample to yield at least one second isotopically labeled protein, wherein the first and second isotopically labeled proteins are chemically equivalent yet isotopically distinct;mixing at least portions of the first and second samples to yield a combined sample;and subjecting the combined sample to mass spectrometric analysis to determine a normalized isotope ratio characterizing proteins whose concentration is the same in the first and second samples and an isotope ratio of the first and second isotopically labeled proteins, wherein a difference in the isotope ratio of the first and second isotopically labeled proteins and the normalized isotope ratio is indicative of a difference in concentration of the protein in the first and second samples
  2. 4
    A method for detecting a difference in the concentration of a protein present in a first sample and in a second sample, each sample comprising a plurality of proteins, the method comprising:covalently attaching a first isotopic variant of a chemical moiety to a protein in the first sample to yield at least one first isotopically labeled protein;covalently attaching a second isotopic variant of the chemical moiety to a protein in the second sample to yield at least one second isotopically labeled protein, wherein the first and second isotopically labeled proteins are chemically equivalent yet isotopically distinct;fragmenting proteins in the first and second samples to yield first and second isotopically labeled peptides in the first and second samples, respectively;mixing at least portions of the first and second samples to yield a combined sample, wherein mixing is performed before or after fragmentation;and subjecting the combined sample to mass spectrometric analysis to determine a normalized isotope ratio characterizing peptides derived from proteins whose concentration is the same in the first and second samples and an isotope ratio of the first and second isotopically labeled peptides, wherein a difference in the isotope ratio of the first and second isotopically labeled peptides and the normalized isotope ratio is indicative of a difference in concentration in the first and second samples of a protein derived from the peptide.
  3. 5
    A method for detecting a difference in the concentration of a protein present in a first sample and in a second sample, each sample comprising a plurality of proteins, the method comprising:fragmenting proteins in the first and second samples to yield at least one peptide in each sample;covalently attaching a first isotopic variant of a chemical moiety to a peptide in the first sample to yield at least one first isotopically labeled peptide;covalently attaching a second isotopic variant of the chemical moiety to a peptide in the second sample to yield at least one second isotopically labeled peptide, wherein the first and second isotopically labeled peptides are chemically equivalent yet isotopically distinct;mixing at least portions of the first and second samples to yield a combined sample;and subjecting the combined sample to mass spectrometric analysis to determine a normalized isotope ratio characterizing peptides derived from proteins whose concentration is the same in the first and second samples and an isotope ratio of the first and second isotopically labeled peptides, wherein a difference in the isotope ratio of the first and second isotopically labeled peptides and the normalized isotope ratio is indicative of a difference in concentration in the first and second samples of a protein derived from the peptide.
  4. 6
    A method for detecting a difference in the concentration of a protein originally present in a first sample and in a second sample, each sample comprising a plurality of peptides derived from fragmentation of proteins originally present in the sample, the method comprising:covalently attaching a first isotopic variant of a chemical moiety to a peptide in the first sample to yield at least one first isotopically labeled peptide;covalently attaching a second isotopic variant of the chemical moiety to a peptide in the second sample to yield at least one second isotopically labeled peptide, wherein the first and second isotopically labeled peptides are chemically equivalent yet isotopically distinct;mixing at least portions of the first and second samples to yield a combined sample;and subjecting the combined sample to mass spectrometric analysis to determine a normalized isotope ratio characterizing peptides derived from proteins whose concentration is the same in the first and second samples and an isotope ratio of the first and second isotopically labeled peptides, wherein a difference in the isotope ratio of the first and second isotopically labeled peptides and the normalized isotope ratio is indicative of a difference in concentration in the first and second samples of a protein derived from the peptide
  5. 33
    A method for detecting a difference in the concentration of a protein present in a first sample and in a second sample, each sample comprising a plurality of proteins, the method comprising:providing a first and second sample, wherein the first sample is obtained from a biological environment prior to the application of a stimulus and the second sample is obtained from the biological environment after the application of the stimulus;fragmenting proteins in the first and second samples to yield peptides;contacting the peptides in the first sample with a first acylating agent comprising a first isotope to yield at least one first isotopically labeled peptide;contacting the peptides in the second sample with a second acylating agent comprising a second isotope to yield at least one second isotopically labeled peptide, wherein the first and second isotopically labeled peptides are chemically equivalent yet isotopically distinct;mixing at least portions of the first and second samples to yield a combined sample;contacting peptides in the combined sample with a capture moiety to select at least one pair of chemically equivalent isotopically distinct peptides comprising at least one affinity ligand;fractionating the selected peptides yield a plurality of peptide fractions amenable to mass spectrometric isotope ratio analysis;subjecting the combined sample to mass spectrometric analysis to determine a normalized isotope ratio characterizing peptides derived from proteins whose concentration is the same in the first and second samples and an isotope ratio of the first and second isotopically labeled peptides, wherein a difference in the isotope ratio of the first and second isotopically labeled peptides and the normalized isotope ratio is indicative of a difference in concentration in the first and second samples of a protein derived from the peptide;and identifying the protein from which the peptide was derived.
  6. 34
    A method for determining whether a protein is present in a one sample but not in another sample, each sample comprising a plurality of proteins, the method comprising:providing a first and second sample, wherein the first sample is obtained from a biological environment prior to the application of a stimulus and the second sample is obtained from the biological environment after the application of the stimulus;fragmenting proteins in the first and second samples to yield peptides;partitioning the first sample into a first subsample and a second subsample;contacting the peptides in the first subsample with a first acylating agent comprising a first isotope;contacting the peptides in the second subsample with a second acylating agent comprising a second isotope;contacting the peptides in the second sample with a third acylating agent comprising a third isotope, wherein the first, second and third acylating agents are chemically equivalent yet isotopically distinct;mixing at least portions of the first and second subsamples and the second sample to yield a combined sample;fractionating the peptides in the combined sample to yield a plurality of peptide fractions amenable to mass spectrometric isotope ratio analysis;and subjecting at least one peptide fraction to mass spectrometric isotope ratio analysis, wherein the presence of a doublet indicates the absence of the protein in the second sample and the presence of a single peak indicates the absence of the protein in the first sample.
  7. 35
    A method for analyzing differences in protein content among plural protein samples, the method comprising:fragmenting at least a first protein sample and a second protein sample to produce a first peptide pool and a second peptide pool;isotopically labeling at least a portion of the peptides in at least one of the pools so as to permit resolution of otherwise identical peptides in the first and second peptide pools by mass analysis;contacting peptides from at least a portion of both of the peptide pools with a capture moiety to yield affinity-selected peptides comprising an affinity ligand, wherein the capture moiety selects for the affinity ligand;and analyzing the affinity-selected peptides by mass spectrometry to determine one or more differences between the first and second samples.
  8. 59
    Broadest claimClaim Score 87, broad(NHIP)A method for quantifying a peptide comprising:subjecting a sample comprising isotopically labeled isobaric peptides to mass spectrometric analysis to yield fragment ions, wherein at least two of the fragment ions are isotopically labeled and differ in mass with respect to each other;and determining the isotope ratio of the at least two fragment ions, wherein the isotope ratio is indicative of the relative quantities of the isobaric peptides in the sample.
  9. 60
    A method for quantifying a peptide comprising:subjecting a sample comprising isotopically labeled peptides to a first mass spectrometric analysis to identify a plurality of isobaric peptides;subjecting the plurality of isotopically labeled isobaric peptides to a second mass spectrometric analysis to yield fragment ions, wherein at least two of the fragment ions are isotopically labeled and differ in mass with respect to each other;and determining the isotope ratio of the at least two fragment ions, wherein the isotope ratio is indicative of the relative quantities of the isobaric peptides in the sample.
  10. 61
    A method for quantifying a peptide comprising:subjecting a sample comprising isotopically labeled peptides to a first mass spectrometric analysis to identify a plurality of peptides whose masses overlap;subjecting the plurality of isotopically labeled isobaric peptides to a second mass spectrometric analysis to yield fragment ions, wherein at least two of the fragment ions are isotopically labeled and differ in mass with respect to each other;and determining the isotope ratio of the at least two fragment ions, wherein the isotope ratio is indicative of the relative quantities of the isobaric peptides in the sample.
  11. 63
    A method for identifying a protein in a sample comprising a plurality of proteins, the method comprising:providing peptides derived from fragmentation of proteins in a sample comprising a plurality of proteins, wherein at least one peptide derived from the protein to be identified comprises at least one affinity ligand;contacting the peptides with a capture moiety to select peptides comprising the affinity ligand;fractionating the selected peptides to yield a plurality of peptide fractions;subjecting the peptides in at least one peptide fraction to mass spectrometric analysis to detect at least one peptide derived from the protein to be identified;and identifying the protein from which the detected peptide was derived.
  12. 84
    A method for identifying a protein in a sample comprising a plurality of proteins, the method comprising:providing peptides derived from fragmentation of proteins in a sample comprising a plurality of proteins, wherein at least one peptide comprises at least one affinity ligand;contacting the peptides with a capture moiety to select peptides comprising the at least one affinity ligand;determining the mass of at least one peptide comprising the at least one affinity ligand which is a signature peptide of the protein;and using the mass of the signature peptide to identify the protein from which the signature peptide was derived.
  13. 85
    A method for analyzing a protein in a sample comprising a plurality of proteins, the method comprising the steps of:providing a sample comprising at least one protein comprising a signature peptide comprising an affinity ligand;fragmenting the proteins in the sample to produce a peptide pool;contacting peptides from at least a portion of the peptide pool with a capture moiety that selects for the affinity ligand to select peptides comprising the signature peptide, wherein the affinity ligand does not include an isotopic label;and analyzing at least a portion of the peptide pool by mass spectroscopy.