Gas-Phase Acidities of Phosphorylated Amino Acids
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Abstract
Gas-phase
acidities and heats of formation have been predicted
at the G3(MP2)/SCRF-COSMO level of theory for 10 phosphorylated amino
acids and their corresponding amides, including phospho-serine (pSer),
-threonine (pThr), and -tyrosine (pTyr), providing the first reliable
set of these values. The gas-phase acidities (GAs) of the three named
phosphorylated amino acids and their amides have been determined using
proton transfer reactions in a Fourier transform ion cyclotron mass
spectrometer. Excellent agreement was found between the experimental
and predicted GAs. The phosphate group is the deprotonation site for
pSer and pThr and deprotonation from the carboxylic acid generated
the lowest energy anion for pTyr. The infrared spectra were calculated
for six low energy anions of pSer, pThr, and pTyr. For deprotonated
pSer and pThr, good agreement is found between the experimental IRMPD
spectra and the calculated spectra for our lowest energy anion structure.
For pTyr, the IR spectra for a higher energy phosphate deprotonated
structure is in good agreement with experiment. Additional experiments
tested electrospray ionization (ESI) conditions for pTyr and determined
that variations in solvent, temperature, and voltage can result in
a different experimental GA value, indicating that ESI conditions
affect the conformation of the pTyr anion