Disclosed are methods for recalibrating mass spectrometry data that
provide improvement in both mass accuracy and precision by adjusting for
experimental variance in parameters that have a substantial impact on
mass measurement accuracy. Optimal coefficients are determined using
correlated pairs of mass values compiled by matching sets of measured and
putative mass values that minimize overall effective mass error and mass
error spread. Coefficients are subsequently used to correct mass values
for peaks detected in the measured dataset, providing recalibration
thereof. Sub-ppm mass measurement accuracy has been demonstrated on a
complex fungal proteome after recalibration, providing improved
confidence for peptide identifications.