3.) As mentioned in the March1 outline a critical step in the glycolysis metabolic pathway (conversion for glucose to pyruvate that produces 2 ATP's) is the attachment of dihydroxyacetone phosphate to an isomerase enzyme via an iminium bridge (step1). There is a second step that takes the imine to the enamine that sets up the C-C formation reaction with an enol that you'll cover in two weeks. Show the mechanism for steps 1 (mild acid catalysis) and 2 (draw resonance forms for the iminium cation). In your mechanism, show the intermediate hemiaminal (carbinolamine). Step 2 may address one of the questions asked in Wednesday's class about the water taking out the N-H proton of the iminium cation versus a C-H proton?
3.) As mentioned in the March1 outline a critical step in the glycolysis metabolic pathway (conversion for glucose to pyruvate that produces 2 ATP's) is the attachment of dihydroxyacetone phosphate to an isomerase enzyme via an iminium bridge (step1). There is a second step that takes the imine to the enamine that sets up the C-C formation reaction with an enol that you'll cover in two weeks. Show the mechanism for steps 1 (mild acid catalysis) and 2 (draw resonance forms for the iminium cation). In your mechanism, show the intermediate hemiaminal (carbinolamine). Step 2 may address one of the questions asked in Wednesday's class about the water taking out the N-H proton of the iminium cation versus a C-H proton?
Biochemistry
9th Edition
ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
Section: Chapter Questions
Problem 1P
Related questions
Question
![3.) As mentioned in the March1 outline a critical step in the glycolysis metabolic pathway
(conversion for glucose to pyruvate that produces 2 ATP's) is the attachment of
dihydroxyacetone phosphate to an isomerase enzyme via an iminium bridge (step1). There is a
second step that takes the imine to the enamine that sets up the C-C formation reaction with
an enol that you'll cover in two weeks.
Show the mechanism for steps 1 (mild acid catalysis) and 2 (draw resonance forms for the
iminium cation). In your mechanism, show the intermediate hemiaminal (carbinolamine). Step
2 may address one of the questions asked in Wednesday's class about the water taking out the
N-H proton of the iminium cation versus a C-H proton?
CH₂OPO3²
E-NH₂ + O=C
(step 1)
CH₂OH
Dihydroxyacetone
phosphate
Iminium (+) cation
intermediate
(step 2)
Enamine (Enol) Intermediate
H CH₂OPO32-
E-N-C
H
C.
OH
H₂O
E](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1b6633aa-8d3f-4749-9c8f-8f8e8cdc4b59%2Fca6dd1af-5e41-4689-9aae-c7b41a68b1a9%2Ftv572qb_processed.png&w=3840&q=75)
Transcribed Image Text:3.) As mentioned in the March1 outline a critical step in the glycolysis metabolic pathway
(conversion for glucose to pyruvate that produces 2 ATP's) is the attachment of
dihydroxyacetone phosphate to an isomerase enzyme via an iminium bridge (step1). There is a
second step that takes the imine to the enamine that sets up the C-C formation reaction with
an enol that you'll cover in two weeks.
Show the mechanism for steps 1 (mild acid catalysis) and 2 (draw resonance forms for the
iminium cation). In your mechanism, show the intermediate hemiaminal (carbinolamine). Step
2 may address one of the questions asked in Wednesday's class about the water taking out the
N-H proton of the iminium cation versus a C-H proton?
CH₂OPO3²
E-NH₂ + O=C
(step 1)
CH₂OH
Dihydroxyacetone
phosphate
Iminium (+) cation
intermediate
(step 2)
Enamine (Enol) Intermediate
H CH₂OPO32-
E-N-C
H
C.
OH
H₂O
E
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