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Glycolysis (biochem)

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evan406's version from 2016-05-03 15:49

Glycolysis abbreviations

Question Answer
G-6-PD-Glucose-6- phosphate
F-6-PD-Fructose-6-phosphate
FBPD-Fructose-1,6- bisphosphate
DHAPDihydroxyacetone phosphate
G-3-PD-Glyceraldehyde- 3-phosphate
BPG1,3-Bisphosphoglycerate
3-PG3-Phosphoglycerate
2-PG2-Phosphoglycerate
PEPPhosphoenolpyruvate
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Glycolysis Molecules

Question Answer
D-Glucose
D-Glucose-6- phosphate
D-Fructose-6-phosphate
D-Fructose-1,6- bisphosphate
Dihydroxyacetone phosphate
D-Glyceraldehyde- 3-phosphate
1,3-Bisphosphoglycerate
3-Phosphoglycerate
2-Phosphoglycerate
Phosphoenolpyruvate
Pyruvate
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Glycolysis steps

Phase 1

Question Answer
Step 1Hexokinase glucokinase
Step 2Phosphoglucoisomerase
Step 3Phosphofructokinase
Step 4Fructose bisphosphate aldolase
Step 5Triose phosphate isomerase
Step 6Glyceraldehyde- 3-phosphate dehydrogenase
Step 7Phosphoglycerate kinase
Step 8Phosphoglycerate mutase
Step 9Enolase
Step 10Pyruvate kinase
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Glycolysis

Phase 1

Question Answer
Step 1:
Hexokinase glucokinase
Step 2:
Phosphoglucoisomerase
Step 3:
Phosphofructokinase
Step 4:
Fructose bisphosphate aldolase
Step 5:
Triose phosphate isomerase
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Phase 2

Question Answer
Step 6:
Glyceraldehyde- 3-phosphate dehydrogenase
Step 7:
Phosphoglycerate kinase
Step 8:
Phosphoglycerate mutase
Step 9:
Enolase
Step 10:
Pyruvate kinase
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Other

Question Answer
Different fates for glucose-6-phosphate
Explain the role and the importance of the Shiff base formation in the aldolase reactionHeterolytic breakage of the C-C bond causes the formation of a carbanion. This has to be stabilized. The formation of the Shiff base allows the movement of the formed electron density towards the nitrogen atom that function as an electron sink.


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