Chapter 20: Q6P (page 1038)
Show how you would synthesize each compound from starting materials containing no more than six carbon atoms.


Short Answer


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Chapter 20: Q6P (page 1038)
Show how you would synthesize each compound from starting materials containing no more than six carbon atoms.




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Glutathione (GSH) is a tripeptide that serves as a mild reducing agent to detoxify peroxides and maintain the cysteine residues of hemoglobin and other red blood cell proteins in the reduced state. Complete hydrolysis of glutathione gives Gly, Glu, and Cys. Treatment of glutathione with carboxypeptidase gives glycine as the first free amino acid released. Treatment of glutathione with 2,4-dinitrofluorobenzene (Sanger reagent, Problem 24-21, page 1282), followed by complete hydrolysis, gives the 2,4-dinitrophenyl derivative of glutamic acid. Treatment of glutathione with phenyl isothiocyanate does not give a recognizable phenylthiohydantoin, however.
(a) Propose a structure for glutathione consistent with this information. Why would glutathione fail to give a normal product from Edman degradation, even though it gives a normal product from the Sanger reagent followed by hydrolysis?
(b) Oxidation of glutathione forms glutathione disulfide(GSSG). Propose a structure for glutathione disulfide, and write a balanced equation for the reaction of glutathione with hydrogen peroxide.
Question: Rank the compounds in each set in order of increasing acid strength.
(a),,
(b) ,,
(c)
,
, 
The following NMR spectra correspond to the compound of formula (A) C9H10O2, (B) C4H6O2, C6H10O2 . Propose structure, and show how it is consistent with the observed absorptions.
Most of the Fischer esterification mechanism is identical with the mechanism of acetal formation. The difference is in the final step, where a resonance-stabilized carbocation loses a proton to give the ester. Write mechanisms for the following reactions, with the comparable steps directly above and below each other. Explain why the final step of the esterification (proton loss) cannot occur in acetal formation, and show what happens instead.


Question: A carboxylic acid has two oxygen atoms, each with two nonbonding pairs of electrons.
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