4. Pyridoxal Phosphate Reaction Mechanisms Threonine can be broken down by the enzyme threonine dehydratase, which catalyzes the conversion of threonine to alpha:ketobutzrate and ammonia. The enzyme uses PLP as a cofactor. Suggest a mechanism for this reaction, based on the mechanisms in Figure 18-6. Note that this reaction includes an elimination at the betta carbon of threonine. OH NH, PLP CH-CH-CHCO0- CH,-CH-C-Co0 + NH, + H,0 threonine Threonine dehydratane a-Ketobutyrate

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4. Pyridoxal Phosphate Reaction Mechanisma Threonine can be broken down by the enzyme
threonine
dehydratase, which catalyzes the conversion of threonine to alpha:ketobutzrate, and ammonia. The
enzyme uses PLP as a cofactor. Suggest a mechanism for this reaction, based on the mechanisms in
Figure 18-6. Note that this reaction includes an elimination at the betta carbon of threonine.
OH NH,
PLP
threonine
dehydratase
CH-CH-CHCOO-
CH-CH-C-COO + NH, + H,0
Threonine
a-Ketobutyrate
Transcribed Image Text:4. Pyridoxal Phosphate Reaction Mechanisma Threonine can be broken down by the enzyme threonine dehydratase, which catalyzes the conversion of threonine to alpha:ketobutzrate, and ammonia. The enzyme uses PLP as a cofactor. Suggest a mechanism for this reaction, based on the mechanisms in Figure 18-6. Note that this reaction includes an elimination at the betta carbon of threonine. OH NH, PLP threonine dehydratase CH-CH-CHCOO- CH-CH-C-COO + NH, + H,0 Threonine a-Ketobutyrate
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