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Mass spectrometry (revision 9)

Old revision·22:44, 13 Sep 2024·TFA_Counterion

This is an old revision of this page, as it stood at 22:44, 13 Sep 2024, saved by TFA_Counterion with the summary clarify that mass spectrometry confirms identity, not purity. It may differ substantially from the current revision, and any error it contains may since have been corrected.
Mass spectrometry
MeasuresMass-to-charge ratio of ions
Usual ionisation for peptidesElectrospray
AnswersWhat the molecule is; not how much unless calibrated
Analytical method infobox · conventions

Mass spectrometry measures the mass-to-charge ratio of ionised molecules. For peptides it is the ordinary means of confirming identity: an observed molecular mass agreeing with the calculated mass excludes most alternatives, and fragmentation can confirm the sequence itself.[1]

A purity determination by chromatography establishes that one species dominates a sample; it does not establish which species. These are separate questions and require separate determinations. A certificate reporting purity but no identity leaves the more fundamental of the two unanswered.[2]

Peptides ionised by electrospray carry multiple charges, so a single peptide produces a series of peaks at different charge states. The instrument software deconvolves this envelope into one neutral mass, and it is that deconvolved mass that appears on a report.[1][3]

Ionisation and mass analysis

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Electrospray disperses a solution into charged droplets in an electric field; solvent evaporates and ions are released into the gas phase. It is a soft technique — the molecule survives largely intact — which is why it suits peptides and proteins. Matrix-assisted laser desorption is the other common soft method and tends to produce singly charged ions.[1]

Mass analysers differ in resolution and in mass accuracy. A quadrupole gives unit resolution and is adequate for confirming a mass to within a dalton; time-of-flight and orbital-trap analysers give sufficient resolution to determine a mass to a few parts per million, which distinguishes species a quadrupole cannot.

The distinction matters for peptide work because the confounders are close in mass. Deamidation adds 0.984 Da, which unit resolution cannot resolve from the parent; oxidation adds 16 Da, which it can. A report stating an observed mass without stating the resolution of the instrument understates the ambiguity.[2]

References

  1. ^ a b c Aebersold R, Mann M. "Mass spectrometry-based proteomics." Nature 422(6928):198–207 (2003). DOI:10.1038/nature01511. PMID 12634793.
  2. ^ a b United States Pharmacopeia, General Chapter <1503>, Quality Attributes of Synthetic Peptide Drug Substances.
  3. ^ United States Pharmacopeia, General Chapter <736>, Mass Spectrometry.