Bbiochemtools

Tyrosine titration curve

Tyrosine has 3 ionizable groups, with pKa values of 2.20, 9.11 and 10.07. Its isoelectric point is pI 5.66, and the curve has 2 equivalence points and 3 buffering plateaus.

The ionizable groups

GrouppKaBehaviour
alpha-carboxyl2.20loses H+ as pH rises
alpha-amino9.11keeps H+ until pH passes it
phenol side chain10.07loses H+ as pH rises

Where it buffers

A weak acid buffers within about one pH unit either side of its pKa, which is the flat part of the curve. For tyrosine that means:

Buffering rangeCentred on
pH 1.20 to 3.20pKa 2.20
pH 8.11 to 10.11pKa 9.11
pH 9.07 to 11.07pKa 10.07

Equivalence points

Halfway between two pKa values the previous group is fully titrated and the next has not started. Those are the steep parts.

PointpH
Equivalence point 1pH 5.65
Equivalence point 2pH 9.59

What charge it carries, and when

Reading the curve left to right, each pKa you pass strips off one proton and drops the net charge by one. Between two pKa values one species dominates:

pH rangeNet charge
below pH 2.20+1
pH 2.20 to 9.110
pH 9.11 to 10.07-1
above pH 10.07-2

The charge is zero at the isoelectric point, which is why tyrosine will not move in an electric field at pH 5.66. That is the basis of isoelectric focusing, and it is why the pI is the number worth remembering rather than the individual pKa values.

Net charge at physiological pH

At pH 7.4 no group is cleanly on or off. Each contributes a fraction, given by the Henderson-Hasselbalch relation, and the net charge is their sum:

Net charge on tyrosine at pH 7.4 = -0.02

This is the calculation behind every peptide charge question. Do it for each residue in a sequence and add the results, and you have the charge on the whole peptide.

Working out the pI

Tyrosine has three ionizable groups, so the pI is the average of the two pKa values that bracket the neutral form: (2.20 + 9.11) / 2 = 5.655, published as pI 5.66. The third group is already fully protonated or fully deprotonated there, so it does not enter the average.

Related

Plot any amino acid's titration curve, or see all 20 amino acids with their pKa values. There is also a peptide charge and pI calculator for whole sequences.

Where the numbers come from

pKa values are the Lehninger set, the same ones used across this site. The curve is generated from those values with the Henderson-Hasselbalch relation for each group, and the pI is solved solved numerically as a check on the arithmetic above, which agrees to within 0.03 pH units.