9. Phosphotyrosine (shown below) has four ionizable functional groups (pK1 = 2.5, pKR1 = 2.1, pKr2 = 7.2, pK2 = 9.5). (a) Write the equilibrium equation for its four ionization forms and assign the proper pka for each ionization. DRAW the structure of phosphotyrosine in each ionization state. What is the net charge on the phosphotyrosine molecule in each ionization state? *H3N. pK2 - 9.5 .COOH pK, - 2.5 O-P-OH pKRI - 2.1 pKRI - 7.2 (b) Draw the titration curve of phosphorotyrosine and indicate each pKa and the isoelectric point (pl), indicate the molar equivalents of OH on the x-axis.

Organic Chemistry
8th Edition
ISBN:9781305580350
Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Publisher:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Chapter18: Functional Derivatives Of Carboxylic Acids
Section18.8: Interconversion Of Functional Derivatives
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9. Phosphotyrosine (shown below) has four ionizable functional groups (pK1 = 2.5, pKR1
= 2.1, pKr2 = 7.2, pK2 = 9.5).
(a) Write the equilibrium equation for its four ionization forms and assign the proper
pka for each ionization. DRAW the structure of phosphotyrosine in each ionization
state. What is the net charge on the phosphotyrosine molecule in each ionization
state?
*H3N.
pk2 - 9.5
.COOH
pK, - 2.5
O=P-OH pKRI - 2.1
ÖH
pKRI - 7.2
(b) Draw the titration curve of phosphorotyrosine and indicate each pKa and the
isoelectric point (pl), indicate the molar equivalents of OH on the x-axis.
Transcribed Image Text:9. Phosphotyrosine (shown below) has four ionizable functional groups (pK1 = 2.5, pKR1 = 2.1, pKr2 = 7.2, pK2 = 9.5). (a) Write the equilibrium equation for its four ionization forms and assign the proper pka for each ionization. DRAW the structure of phosphotyrosine in each ionization state. What is the net charge on the phosphotyrosine molecule in each ionization state? *H3N. pk2 - 9.5 .COOH pK, - 2.5 O=P-OH pKRI - 2.1 ÖH pKRI - 7.2 (b) Draw the titration curve of phosphorotyrosine and indicate each pKa and the isoelectric point (pl), indicate the molar equivalents of OH on the x-axis.
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