Lesson 11: Glycolysis Flashcards

1
Q

glycolysis

A

literally means “the breaking of glucose”
- net exergonic process in cells and under standard conditions

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2
Q

glucogenesis

A

is the “biochemical reversal” of glycolysis

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3
Q

cellular localization of glycolsis

A
  • glycolysis occurs in the cytoplasm on eukaryotes and prokaryotes
  • is anaerobic, independent of O2
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4
Q

STAGE 1

A

2 ATP investment
reactions 1-4
0 reduced coenzymes
net negative delta G

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5
Q

Reaction 1:

A

Name of RXN: Hexokinase

RXN:
Glucose + ATP –>. Glucose -6- phosphate + ADP

Enzyme Name: Hexokinase (or gluckokinase)

—- Phosphoryl group is added to C-6—–

  • transferase, far from equi, no reversible under cellular conditions, ATP consumed (kinase)
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6
Q

Reaction 2:

A

Name of RXN: Phosphoglucoseisomerase

RXN: Glucose-6-Phosphate –> Fructose-6-phosphate

Enzyme Name: Phosphoglucoiosomerase

—– 6 membered ring is converted to a 5 membered ring—-

  • Isomerase, Near equi, reversible under cellular conditions depending on [G6P] and [F6P]
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7
Q

Reaction 3:

A

Name of RXN: Phosphofructokinase

RXN:
Fructose -6-P —> Fructose - 1,6 BP

—- (OH to PO4)—-

Enzyme Name: Phosphofructokinase - 1

  • transferase, far from equil, not reversible under cellular conditions, kinase, 2nd and last energy inverstiture of glycolysis

!!!!! when a cell wants to turn off glycolysis, it turns it of here!!!!!

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8
Q

Reaction 4:

A

Name of RXN: Aldolase

RXN:
Fructose-1,6 Biphosphate –>
Glyceraldehyde -3-P and Dihydroxyacetone - P

Enzyme Name: Aldolase

—–ring opened up —–

  • near equil undner cellular conditions, hydrolase, [DHAP] and [GAP] quickly pulled away so Q is less than 1
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9
Q

STAGE 2

A
  • total of 4ATP synthesized in stage II via substrate level phosphorylations
  • total of 2 NADH + H+ synthesized
  • end product is 2 molecules of pyruvate
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10
Q

Reaction 5:

A

Name of RXN: Triose phosphate isomerase

RXN:
Dihydroxyacetone - Phosphate –> Glyceraldehyde-3-Phosphate

Enzyme Name: Triose phosphate isomerase

  • ketose to aldose isomerization, near equil, rxn easily reversible under cellular conditions
    !!!!!! at the end of this step, 2 GAP molecules move throguh the rest of glycolysis
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11
Q

Reaction 6:

A

Name of RXN: Glyceraldehyde 3 phosphate dehydrigenase (GAPDH)

RXN:
Glyceradldehyde-3-phosphate + Pi + NAD+ —> 1,3 Bisphosphoglycerate (1,3 BPG) + NADH + H+

Enzyme:
Glyceraldehyde 3 phosphate

  • No ATP consumed Pi is utilized, another phosphoryl trasnfer reaction – NAD+ is a cofactor and first time NADH + H+ produeced, Near rxn

!!!!! lot of potential energy in 1,3 BPG

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12
Q

Reaction 7:

A

Name of RXN: Phosphoglycerate Kinase

RXN:
1,3 Bisphophoglycerate + ADP –> 3 - Phosphoglycerate + ATP

Enzyme Name:
Phosphoglycerate Kinase

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13
Q

Reaction 8:

A

Name of RXN: Phophoglycerate Mutase

RXN:
3-Phosphoglycerate –> 2- Phosphoglycerate

Enzyme Name: Phosphoglycerate mutase

Near EQ rxn, mustases function like isomerases except the phosphte that ends up on C-2 is not the same one that came from C-3

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14
Q

Reaction 9:

A

Name of RXN: Enolase

RXN:
2-phosphoglycerate –> phosphoenolpyruvate + H2O

Enzyme Name: Enolase

  • near eq rxn, belongs to a class of enzymes called lyases ( to make or break double bonds through removal of water)
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15
Q

Reaction 10:

A

Name of RXN: Pyrivate Kinase

RXN: phosphoenolpyruvate + ADP –> pyruvate + ATP

Enzyme Name: pyruvate kinase

  • far from eq rxn, transferase, kinase, free energy pf RP hydrolysis is conserved in the synthesis of ATP in our second and last SUBSTRATE LEVEL PHOSPHORYLATION
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16
Q

which reactions are far from eq:

A

1,3,10

17
Q

glycolysis summary

A
  • 10 rxns total
  • only 1,3 and 10 are far from eq.
  • 2 ATP as inputs
  • 4 total ATP as output ) for a net of +2 ATP)
  • 2 NAD+ as input
  • 2NADH + H+ as outputs (these move onto ETC under aerobic conditions)
  • 1 glucose yields 2 pyrivate
  • catabolic pathway
18
Q

Homolactic Fermentation

A

NADH+ +H recycled to form NAD+ (lactae dehydrogenase)
ex: muscle cells

19
Q

Alcoholic Fermentation

A

Pyrivate (w/ pyruvate decarboxylase) –> acetaldehyde –> ethanol