SlideShare a Scribd company logo
1 of 22
GLUCONEOGENESIS
&
GLYCOGENOLYSIS
PRESENTED BY-
HASNAHANA CHETIA
M.Sc Ist Sem,
Dept.Of Biotechnology,G.U.
GLUCONEOGENESIS
Gluconeogenesis is a metabolic pathway
occurring in living beings for synthesis of
glucose from non-carbohydrate precursors. It
converts pyruvate and its related three- and
four-carbon compounds into glucose. It is an
irreversible process . It occurs in cytosol.
PATHWAY
 CONVERSION OF PYRUVATETO PHOSPHOENOL
PYRUVATE (PEP)-
Pyruvate is transported from cytosol to
mitochondria or generated from alanine by
transamination within mitochondria.Then, pyruvate
carboxylase, an enzyme that uses biotin as a co-
enzyme; converts pyruvate to oxaloacetate.
PYRUVATE + HCO₃⁻ + ATP  OXALOACETATE + ADP +
Pi
Because mitochondrial membrane has no
transporter for oxaloacetate, so pyruvate is reduced to
malate by malate dehydrogenase at the expense of
NADH.
OXALOACETATE + NADH + H⁺ ↔ L-MALATE + NAD⁺
Malate leaves the mitochondrion through a
specific transporter in the inner mitochondrial
membrane and in cytosol, it is re-oxidised to
oxaloacetate, with the production of cytosolic
NADH.
MALATE + NAD⁺OXALOACETATE + NADH + H⁺
The oxaloacetate is then converted to PEP by
phosphoenolpyruvate carboxykinase.
OXALOACETATE + GTP ↔PEP + CO₂ + GDP
 CONVERSION OF PEPTO 2-PHOSPHOGLYCERATE-
This step is reverse of the step in glycolysis. This
reaction is performed by Enolase.
 CONVERSION OF 2-PHOSPHOGLYCERATETO 3-
PHOSPHOGLYCERATE-
This step is also reverse of the step in glycolysis. This
step is catalyzed by the enzyme Phosphoglycerate
Mutase.
 CONVERSION OF 3-PHOSPHOGLYCERATE TO 1,3-
BISPHOSPHOGLYCERATE-
This step is reverse of the step in glycolysis as well.
This step is catalyzed by Phosphoglycerate Kinase.
 REDUCTION OF 1,3 BISPHOSPHOGLYCERATETO
GLYCERALDEHYDE-3-PHOSPHATE –
This step is reverse of the step in glycolysis. In this
step, 1,3-Bisphosphoglycerate is reduced to
Glyceraldehyde-3-phosphate by the enzyme
Glyceraldehyde 3-phosphate dehydrogenase.
 INTERCONVERSION OFTRIOSE PHOSPHATES-
This step is reverse of the step in glycolysis. The
Glyceraldehyde 3-phosphate is interconverted to
Dihydroxyacetone phosphate byTriose isomerase
phosphate.
 CONVERSION OF DIHYDROXYACETONE
PHOSPHATE TO FRUCTOSE 1,6-BISPHOSPHATE-
This step is also reverse of the step in glycolysis.
This step is performed by the enzyme Fructose 1,6
BisphosphateAldolase.
 CONVERSION OF FRUCTOSE 1,6
BISPHOSPHATETO FRUCTOSE 6- PHOSPHATE –
This is an irreversible step where Fructose 1,6
Bisphosphate is converted to Fructose 6- Phosphate
by the Mg⁺⁺-dependent enzyme, Fructose 1,6
Bisphosphatase which promotes the hydrolysis of
the C-1 phosphate.
Fructose 1,6 Bisphosphate + H₂O  Fructose 6-
Phosphate + Pi
 CONVERSION OF FRUCTOSE 6-PHOSPHATE TO
GLUCOSE 6-PHOSPHATE –
This step is reverse of the step in glycolysis.This
reversible conversion of a ketose to an aldose is
done by the enzyme Phosphohexose Isomerase.
 CONVERSION OF GLUCOSE 6- PHOSPHATE TO
GLUCOSE-
It is the final reaction of gluconeogenesis where
Glucose 6-Phosphate is dephosphorylated to yield
Glucose by another Mg⁺⁺-dependent enzyme
Glucose 6-Phosphatase.
Glucose 6-Phosphate + H₂O  Glucose + Pi
THE THREE BYPASS REACTIONS
Almost all the steps of Gluconeogenesis are
reverse of Glycolysis except three reactions-
1. CONVERSION OF PYRUVATETO PHOSPHOENOL
PYRUVATE
2. CONVERSION OF FRUCTOSE 1,6 BISPHOSPHATETO
FRUCTOSE 6- PHOSPHATE
3. CONVERSION OF GLUCOSE 6- PHOSPHATETO
GLUCOSE
Here a different set of enzymes are utilized than
Glycolysis and are characterized by a large –ve free
energy change, ∆G whereas in the other reactions, the
value of ∆G is near to 0.
REGULATION
There are 3 steps involved in regulation of
Gluconeogenesis.
1. CONVERSION OF PYRUVATE TO
OXALOACETATE-
When the cell’s energy need is being met,
oxidative phosphorylation slows down,
NADH:NAD⁺ rises and inhibits citric acid cycle
due to which Acetyl-CoA accumulates. Since
Acetyl-CoA is an positive allosteric modulator
of Pyruvate Carboxylase, it stimulates
gluconeogenesis and increases the formation of
glucose from pyruvate.
2. CONVERSION OF FRUCTOSE 1,6-
BISPHOSPHATETO FRUCTOSE 6-
PHOSPHATE-
The enzyme FBPase-1 involved in this
reaction is strongly inhibited by AMP. So,
when a high proportion of the cell’s adenylate
is in the form of ATP, gluconeogenesis is
favored.
3. HORMONAL REGULATION OF
GLUCONEOGENESIS-
The hormonal regulation of gluconeogenesis is
mediated by Fructose 2,6-Bisphosphate, an
allosteric effector for the enzyme FBPase-1.The
hormones epinephrine and glucagon decreases
the concentration of Fructose 2,6-Bisphosphate
by raising cAMP and bringing about
phosphorylation, i.e., inactivation of PFK-2 and
activates FBPase-2 leading to breakdown of
Fructose 2,6-Bisphosphate. Insulin increases the
concentration of Fructose 2,6-Bisphosphate by
dephosphorylating PFK-2.
GLYCOGENOLYSIS
Glycogenolysis is a metabolic process by
which glycogen, the primary carbohydrate
stored in the liver and muscle cells of animals, is
broken down into glucose to provide immediate
energy and to maintain blood glucose levels
during fasting.
Glycogen is catabolized by removal of a
glucose monomer through cleavage with
inorganic phosphate to produce glucose-1-
phosphate.This derivative of glucose is then
converted to glucose-6-phosphate, an
intermediate in glycolysis.
It takes place in the muscle and liver
tissues, where glycogen is stored, as a hormonal
response to epinephrine and/or glucagon.
PATHWAY
 First step-
The overall reaction for the 1st step is:
Glycogen (n residues) + Pi ↔ Glycogen (n-1
residues)+ G1P
Here, glycogen phosphorylase cleaves the
bond at the C1 position by substitution of a
phosphoryl group. It breaks down glucose
polymer at [α14] linkages until 4 linked
glucoses are left on the branch.
Pyridoxal phosphate is an important co-
factor in this reaction, as its phosphate group
acts as a general acid catalyst, promoting attack
by Pi on the glycosidic bond.
 Second step-
The second step involves the
enzyme oligo α[1→6] to α[1→4]
glucantransferase or debranching enzyme,
which transfers the three remaining glucose
units to another 1,4 terminal of glycogen,
which exposes the α[1→6] branching point.
The final action of this enzyme is
the hydrolysis of the remaining glucose
attached at the α[1→6] branch point, which
gives one free glucose molecule.
 Third step-
The third and last stage converts G1P
(glucose-1-phosphate) to G6P (glucose-6-
phosphate) through the enzyme
phosphoglucomutase.
G1P ↔ G6P
Here the enzyme donates a phosphoryl
group to C-6 of the substrate and accepts a
phosphoryl group from C-1.
FATES OF GLUCOSE 6 PHOSPHATE
 This G6P can enter glycolysis and serve as
an energy source to support muscle
contraction.
 In liver, it releases glucose into blood when
blood glucose level drops.
REGULATION OF GLYCOGEN PHOSPHORYLASE
 Glycogen phosphorylase is activated in response
to Glucagon or Epinephrine which raise the
[cAMP] level and activate Protein KinaseA. PKA
phosphorylates and activates Phosphorylase
Kinase, which converts Glycogen Phosphorylase
B to its active A form.
 Phosphoprotein Phosphatase 1 reverses the
phosphorylation of Glycogen Phosphorylase A,
inactivating it.
 Glucose binds to the liver isozyme of Glycogen
Phosphorylase,favoring its dephosphorylation
and inactivation.
REFERENCES
 Lehninger’s principles of Biochemistry by
David L. Nelson and Michael M. Cox
 www.wikipedia.org
 Britannica Online Encyclopaedia
Gluconeogenesis and Glycogenolysis Pathways

More Related Content

What's hot

What's hot (20)

Glycolysis
GlycolysisGlycolysis
Glycolysis
 
URONIC ACID PATHWAY
URONIC ACID PATHWAYURONIC ACID PATHWAY
URONIC ACID PATHWAY
 
Gluconeogenesis
Gluconeogenesis Gluconeogenesis
Gluconeogenesis
 
Glycogen metabolism and it’s regulation
Glycogen metabolism and it’s regulationGlycogen metabolism and it’s regulation
Glycogen metabolism and it’s regulation
 
Uronic acid pathway
Uronic acid pathwayUronic acid pathway
Uronic acid pathway
 
Glycogen metabolism and its regulation
Glycogen metabolism and its regulationGlycogen metabolism and its regulation
Glycogen metabolism and its regulation
 
Gluconeogenesis- Steps, Regulation and clinical significance
Gluconeogenesis- Steps, Regulation and clinical significanceGluconeogenesis- Steps, Regulation and clinical significance
Gluconeogenesis- Steps, Regulation and clinical significance
 
Hexose monophosphate pathway (HMP)
Hexose monophosphate pathway (HMP)Hexose monophosphate pathway (HMP)
Hexose monophosphate pathway (HMP)
 
Pentose phosphate pathway
Pentose phosphate pathwayPentose phosphate pathway
Pentose phosphate pathway
 
7 glycogen metabolism
7 glycogen metabolism7 glycogen metabolism
7 glycogen metabolism
 
Gluconeogenesis
GluconeogenesisGluconeogenesis
Gluconeogenesis
 
Hexose Monophosphate Shunt
Hexose Monophosphate ShuntHexose Monophosphate Shunt
Hexose Monophosphate Shunt
 
Glycogenolysis
GlycogenolysisGlycogenolysis
Glycogenolysis
 
Glycogen metabolism
Glycogen metabolismGlycogen metabolism
Glycogen metabolism
 
6 shuttles
6 shuttles6 shuttles
6 shuttles
 
GLYCOLYSIS & ITS REGULATION
GLYCOLYSIS & ITS REGULATIONGLYCOLYSIS & ITS REGULATION
GLYCOLYSIS & ITS REGULATION
 
Gluconeogenesis
GluconeogenesisGluconeogenesis
Gluconeogenesis
 
Gluconeogenesis - The Pathway and Regulation
Gluconeogenesis - The Pathway and Regulation Gluconeogenesis - The Pathway and Regulation
Gluconeogenesis - The Pathway and Regulation
 
Transamination & Deamination
Transamination & DeaminationTransamination & Deamination
Transamination & Deamination
 
Cori cycle
Cori cycleCori cycle
Cori cycle
 

Similar to Gluconeogenesis and Glycogenolysis Pathways

glycolysis.pdf for bscs for human nutrition and dietetics
glycolysis.pdf for bscs for human nutrition and dieteticsglycolysis.pdf for bscs for human nutrition and dietetics
glycolysis.pdf for bscs for human nutrition and dieteticsjiyabhatti475
 
Carbohydrates Metabolism - Copy.pptx
Carbohydrates Metabolism - Copy.pptxCarbohydrates Metabolism - Copy.pptx
Carbohydrates Metabolism - Copy.pptxssuser668f10
 
Glycolysis
GlycolysisGlycolysis
GlycolysisStanz Ng
 
1585123639_Z(H)-VI-Biochemistry-2.pptx
1585123639_Z(H)-VI-Biochemistry-2.pptx1585123639_Z(H)-VI-Biochemistry-2.pptx
1585123639_Z(H)-VI-Biochemistry-2.pptxLijFire
 
CARBOHYDRATE METABOLISM : GLYCOLYSIS
CARBOHYDRATE METABOLISM : GLYCOLYSISCARBOHYDRATE METABOLISM : GLYCOLYSIS
CARBOHYDRATE METABOLISM : GLYCOLYSISADITYA ARYA
 
carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...
carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...
carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...RajkumarKumawat11
 
Mscdfsm biochemistry carbohydrate metabolism https://youtu.be/uPb...
Mscdfsm biochemistry carbohydrate  metabolism            https://youtu.be/uPb...Mscdfsm biochemistry carbohydrate  metabolism            https://youtu.be/uPb...
Mscdfsm biochemistry carbohydrate metabolism https://youtu.be/uPb...Holistic Spa and Salon Academy
 
Unit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolismUnit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolismDipali Kulkarni
 
Unit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolismUnit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolismDipali Kulkarni
 
Glycolysis-general introduction and pathway with biochemical logic
Glycolysis-general introduction and pathway with biochemical logicGlycolysis-general introduction and pathway with biochemical logic
Glycolysis-general introduction and pathway with biochemical logicvarinder kumar
 

Similar to Gluconeogenesis and Glycogenolysis Pathways (20)

Glycolysis
GlycolysisGlycolysis
Glycolysis
 
Glycolsis
GlycolsisGlycolsis
Glycolsis
 
glycolysis.pdf for bscs for human nutrition and dietetics
glycolysis.pdf for bscs for human nutrition and dieteticsglycolysis.pdf for bscs for human nutrition and dietetics
glycolysis.pdf for bscs for human nutrition and dietetics
 
Glycolysis-1.ppt
Glycolysis-1.pptGlycolysis-1.ppt
Glycolysis-1.ppt
 
HMP PATHWAY
HMP PATHWAY HMP PATHWAY
HMP PATHWAY
 
Carbohydrates Metabolism - Copy.pptx
Carbohydrates Metabolism - Copy.pptxCarbohydrates Metabolism - Copy.pptx
Carbohydrates Metabolism - Copy.pptx
 
Glycolysis
GlycolysisGlycolysis
Glycolysis
 
1585123639_Z(H)-VI-Biochemistry-2.pptx
1585123639_Z(H)-VI-Biochemistry-2.pptx1585123639_Z(H)-VI-Biochemistry-2.pptx
1585123639_Z(H)-VI-Biochemistry-2.pptx
 
CARBOHYDRATE METABOLISM : GLYCOLYSIS
CARBOHYDRATE METABOLISM : GLYCOLYSISCARBOHYDRATE METABOLISM : GLYCOLYSIS
CARBOHYDRATE METABOLISM : GLYCOLYSIS
 
glycogen metabolism
glycogen metabolismglycogen metabolism
glycogen metabolism
 
Carbohydrate metabolism
Carbohydrate metabolismCarbohydrate metabolism
Carbohydrate metabolism
 
Carbohydrate 2
Carbohydrate 2Carbohydrate 2
Carbohydrate 2
 
carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...
carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...
carbohydrate metabolism, Glycolysis, metabolic process of carbohydrates, EMP ...
 
Mscdfsm biochemistry carbohydrate metabolism
Mscdfsm biochemistry carbohydrate  metabolismMscdfsm biochemistry carbohydrate  metabolism
Mscdfsm biochemistry carbohydrate metabolism
 
Mscdfsm biochemistry carbohydrate metabolism https://youtu.be/uPb...
Mscdfsm biochemistry carbohydrate  metabolism            https://youtu.be/uPb...Mscdfsm biochemistry carbohydrate  metabolism            https://youtu.be/uPb...
Mscdfsm biochemistry carbohydrate metabolism https://youtu.be/uPb...
 
Unit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolismUnit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolism
 
Unit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolismUnit 2 carbohydrate metabolism
Unit 2 carbohydrate metabolism
 
Glycolysis-general introduction and pathway with biochemical logic
Glycolysis-general introduction and pathway with biochemical logicGlycolysis-general introduction and pathway with biochemical logic
Glycolysis-general introduction and pathway with biochemical logic
 
13 Biochemistry _ Glycolysis
13 Biochemistry _ Glycolysis13 Biochemistry _ Glycolysis
13 Biochemistry _ Glycolysis
 
PENTOSE PHOSPHATE PATHWAY
PENTOSE PHOSPHATE PATHWAY PENTOSE PHOSPHATE PATHWAY
PENTOSE PHOSPHATE PATHWAY
 

More from Hasnahana Chetia

Using bioinformatics for sequence analysis
Using bioinformatics for sequence analysisUsing bioinformatics for sequence analysis
Using bioinformatics for sequence analysisHasnahana Chetia
 
Conventions on biological diversity
Conventions on biological diversityConventions on biological diversity
Conventions on biological diversityHasnahana Chetia
 
In vitro fertilization and embryo transfer in humans
In vitro fertilization and embryo transfer in humansIn vitro fertilization and embryo transfer in humans
In vitro fertilization and embryo transfer in humansHasnahana Chetia
 

More from Hasnahana Chetia (7)

Using bioinformatics for sequence analysis
Using bioinformatics for sequence analysisUsing bioinformatics for sequence analysis
Using bioinformatics for sequence analysis
 
Conventions on biological diversity
Conventions on biological diversityConventions on biological diversity
Conventions on biological diversity
 
Single celled eukaryotes
Single celled eukaryotesSingle celled eukaryotes
Single celled eukaryotes
 
Viriods and prions
Viriods and prionsViriods and prions
Viriods and prions
 
In vitro fertilization and embryo transfer in humans
In vitro fertilization and embryo transfer in humansIn vitro fertilization and embryo transfer in humans
In vitro fertilization and embryo transfer in humans
 
Disk operating system
Disk operating systemDisk operating system
Disk operating system
 
Autoimmune diseases
Autoimmune diseasesAutoimmune diseases
Autoimmune diseases
 

Recently uploaded

Arihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfArihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfchloefrazer622
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactdawncurless
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfchloefrazer622
 
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...fonyou31
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104misteraugie
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdfQucHHunhnh
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformChameera Dedduwage
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxSayali Powar
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfsanyamsingh5019
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpinRaunakKeshri1
 
Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111Sapana Sha
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfciinovamais
 
The byproduct of sericulture in different industries.pptx
The byproduct of sericulture in different industries.pptxThe byproduct of sericulture in different industries.pptx
The byproduct of sericulture in different industries.pptxShobhayan Kirtania
 
Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3JemimahLaneBuaron
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdfSoniaTolstoy
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationnomboosow
 
BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...
BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...
BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...Sapna Thakur
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...EduSkills OECD
 

Recently uploaded (20)

Arihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfArihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdf
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impact
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdf
 
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
Ecosystem Interactions Class Discussion Presentation in Blue Green Lined Styl...
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy Reform
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdf
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpin
 
Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
 
The byproduct of sericulture in different industries.pptx
The byproduct of sericulture in different industries.pptxThe byproduct of sericulture in different industries.pptx
The byproduct of sericulture in different industries.pptx
 
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptxINDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
 
Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3Q4-W6-Restating Informational Text Grade 3
Q4-W6-Restating Informational Text Grade 3
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communication
 
BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...
BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...
BAG TECHNIQUE Bag technique-a tool making use of public health bag through wh...
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
 

Gluconeogenesis and Glycogenolysis Pathways

  • 3. Gluconeogenesis is a metabolic pathway occurring in living beings for synthesis of glucose from non-carbohydrate precursors. It converts pyruvate and its related three- and four-carbon compounds into glucose. It is an irreversible process . It occurs in cytosol.
  • 4. PATHWAY  CONVERSION OF PYRUVATETO PHOSPHOENOL PYRUVATE (PEP)- Pyruvate is transported from cytosol to mitochondria or generated from alanine by transamination within mitochondria.Then, pyruvate carboxylase, an enzyme that uses biotin as a co- enzyme; converts pyruvate to oxaloacetate. PYRUVATE + HCO₃⁻ + ATP  OXALOACETATE + ADP + Pi Because mitochondrial membrane has no transporter for oxaloacetate, so pyruvate is reduced to malate by malate dehydrogenase at the expense of NADH. OXALOACETATE + NADH + H⁺ ↔ L-MALATE + NAD⁺
  • 5. Malate leaves the mitochondrion through a specific transporter in the inner mitochondrial membrane and in cytosol, it is re-oxidised to oxaloacetate, with the production of cytosolic NADH. MALATE + NAD⁺OXALOACETATE + NADH + H⁺ The oxaloacetate is then converted to PEP by phosphoenolpyruvate carboxykinase. OXALOACETATE + GTP ↔PEP + CO₂ + GDP
  • 6.  CONVERSION OF PEPTO 2-PHOSPHOGLYCERATE- This step is reverse of the step in glycolysis. This reaction is performed by Enolase.  CONVERSION OF 2-PHOSPHOGLYCERATETO 3- PHOSPHOGLYCERATE- This step is also reverse of the step in glycolysis. This step is catalyzed by the enzyme Phosphoglycerate Mutase.  CONVERSION OF 3-PHOSPHOGLYCERATE TO 1,3- BISPHOSPHOGLYCERATE- This step is reverse of the step in glycolysis as well. This step is catalyzed by Phosphoglycerate Kinase.
  • 7.  REDUCTION OF 1,3 BISPHOSPHOGLYCERATETO GLYCERALDEHYDE-3-PHOSPHATE – This step is reverse of the step in glycolysis. In this step, 1,3-Bisphosphoglycerate is reduced to Glyceraldehyde-3-phosphate by the enzyme Glyceraldehyde 3-phosphate dehydrogenase.  INTERCONVERSION OFTRIOSE PHOSPHATES- This step is reverse of the step in glycolysis. The Glyceraldehyde 3-phosphate is interconverted to Dihydroxyacetone phosphate byTriose isomerase phosphate.  CONVERSION OF DIHYDROXYACETONE PHOSPHATE TO FRUCTOSE 1,6-BISPHOSPHATE- This step is also reverse of the step in glycolysis. This step is performed by the enzyme Fructose 1,6 BisphosphateAldolase.
  • 8.  CONVERSION OF FRUCTOSE 1,6 BISPHOSPHATETO FRUCTOSE 6- PHOSPHATE – This is an irreversible step where Fructose 1,6 Bisphosphate is converted to Fructose 6- Phosphate by the Mg⁺⁺-dependent enzyme, Fructose 1,6 Bisphosphatase which promotes the hydrolysis of the C-1 phosphate. Fructose 1,6 Bisphosphate + H₂O  Fructose 6- Phosphate + Pi
  • 9.  CONVERSION OF FRUCTOSE 6-PHOSPHATE TO GLUCOSE 6-PHOSPHATE – This step is reverse of the step in glycolysis.This reversible conversion of a ketose to an aldose is done by the enzyme Phosphohexose Isomerase.  CONVERSION OF GLUCOSE 6- PHOSPHATE TO GLUCOSE- It is the final reaction of gluconeogenesis where Glucose 6-Phosphate is dephosphorylated to yield Glucose by another Mg⁺⁺-dependent enzyme Glucose 6-Phosphatase. Glucose 6-Phosphate + H₂O  Glucose + Pi
  • 10. THE THREE BYPASS REACTIONS Almost all the steps of Gluconeogenesis are reverse of Glycolysis except three reactions- 1. CONVERSION OF PYRUVATETO PHOSPHOENOL PYRUVATE 2. CONVERSION OF FRUCTOSE 1,6 BISPHOSPHATETO FRUCTOSE 6- PHOSPHATE 3. CONVERSION OF GLUCOSE 6- PHOSPHATETO GLUCOSE Here a different set of enzymes are utilized than Glycolysis and are characterized by a large –ve free energy change, ∆G whereas in the other reactions, the value of ∆G is near to 0.
  • 11. REGULATION There are 3 steps involved in regulation of Gluconeogenesis. 1. CONVERSION OF PYRUVATE TO OXALOACETATE- When the cell’s energy need is being met, oxidative phosphorylation slows down, NADH:NAD⁺ rises and inhibits citric acid cycle due to which Acetyl-CoA accumulates. Since Acetyl-CoA is an positive allosteric modulator of Pyruvate Carboxylase, it stimulates gluconeogenesis and increases the formation of glucose from pyruvate.
  • 12. 2. CONVERSION OF FRUCTOSE 1,6- BISPHOSPHATETO FRUCTOSE 6- PHOSPHATE- The enzyme FBPase-1 involved in this reaction is strongly inhibited by AMP. So, when a high proportion of the cell’s adenylate is in the form of ATP, gluconeogenesis is favored.
  • 13. 3. HORMONAL REGULATION OF GLUCONEOGENESIS- The hormonal regulation of gluconeogenesis is mediated by Fructose 2,6-Bisphosphate, an allosteric effector for the enzyme FBPase-1.The hormones epinephrine and glucagon decreases the concentration of Fructose 2,6-Bisphosphate by raising cAMP and bringing about phosphorylation, i.e., inactivation of PFK-2 and activates FBPase-2 leading to breakdown of Fructose 2,6-Bisphosphate. Insulin increases the concentration of Fructose 2,6-Bisphosphate by dephosphorylating PFK-2.
  • 15. Glycogenolysis is a metabolic process by which glycogen, the primary carbohydrate stored in the liver and muscle cells of animals, is broken down into glucose to provide immediate energy and to maintain blood glucose levels during fasting. Glycogen is catabolized by removal of a glucose monomer through cleavage with inorganic phosphate to produce glucose-1- phosphate.This derivative of glucose is then converted to glucose-6-phosphate, an intermediate in glycolysis. It takes place in the muscle and liver tissues, where glycogen is stored, as a hormonal response to epinephrine and/or glucagon.
  • 16. PATHWAY  First step- The overall reaction for the 1st step is: Glycogen (n residues) + Pi ↔ Glycogen (n-1 residues)+ G1P Here, glycogen phosphorylase cleaves the bond at the C1 position by substitution of a phosphoryl group. It breaks down glucose polymer at [α14] linkages until 4 linked glucoses are left on the branch. Pyridoxal phosphate is an important co- factor in this reaction, as its phosphate group acts as a general acid catalyst, promoting attack by Pi on the glycosidic bond.
  • 17.  Second step- The second step involves the enzyme oligo α[1→6] to α[1→4] glucantransferase or debranching enzyme, which transfers the three remaining glucose units to another 1,4 terminal of glycogen, which exposes the α[1→6] branching point. The final action of this enzyme is the hydrolysis of the remaining glucose attached at the α[1→6] branch point, which gives one free glucose molecule.
  • 18.  Third step- The third and last stage converts G1P (glucose-1-phosphate) to G6P (glucose-6- phosphate) through the enzyme phosphoglucomutase. G1P ↔ G6P Here the enzyme donates a phosphoryl group to C-6 of the substrate and accepts a phosphoryl group from C-1.
  • 19. FATES OF GLUCOSE 6 PHOSPHATE  This G6P can enter glycolysis and serve as an energy source to support muscle contraction.  In liver, it releases glucose into blood when blood glucose level drops.
  • 20. REGULATION OF GLYCOGEN PHOSPHORYLASE  Glycogen phosphorylase is activated in response to Glucagon or Epinephrine which raise the [cAMP] level and activate Protein KinaseA. PKA phosphorylates and activates Phosphorylase Kinase, which converts Glycogen Phosphorylase B to its active A form.  Phosphoprotein Phosphatase 1 reverses the phosphorylation of Glycogen Phosphorylase A, inactivating it.  Glucose binds to the liver isozyme of Glycogen Phosphorylase,favoring its dephosphorylation and inactivation.
  • 21. REFERENCES  Lehninger’s principles of Biochemistry by David L. Nelson and Michael M. Cox  www.wikipedia.org  Britannica Online Encyclopaedia