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Respiration: ATP and Coenzymes
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1. What is ATP?2. Where do we get energy from?3. If you compared the rate of respiration of a bacterial cell at 20oC
and 35 oC what would you expect to find? What would you expect to find at 70 oC? Explain
4. What is cellular respiration, where does it occur and why is it important to living organisms?
5. How is respiration similar to burning fuel? How is it different?6. Can enzymes respire? Explain7. What is aerobic respiration?8. What is anaerobic respiration?9. Why do yeast cells sometimes respire to produce alcohol but at
other times just produce carbon dioxide and water?10.When substances cross biological membranes energy is either
released or used. How is membrane transport by diffusion and by active transport a) different and b) similar?
What do you already know?
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09000 5 87654321540 04 98765432103 9876543210987654321021 987654321098765432100Hours Minutes Seconds
Answer in as much detail as you can
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09000 1 87654321500 04 98765432103 9876543210987654321021 987654321098765432100Hours Minutes Seconds
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What is energy?Cannot be created or destroyed
Is the ability to do work
Can be transduced from one form to another
Is released in respiration to make ATP
Has many forms
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Uses of ATPCells need a supply of ATP molecules to act as an
immediate energy source for :• Active transport, secretion, exocytosis, endocytosis• Maintaining nerve cell membrane potential• Movement: Muscles, Flagella, Microtubules• Mitosis• DNA replication• Synthesis of new organelles• Metabolic synthesis and chemical activation• Bioluminescence• Maintenance of body temperature
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ATP = source of energy
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ATP = source of energy
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HOMEWORK
Read pages 80 – 81
Answer questions 1-4 page 81 (full sentences, key terminology, logical argument / explanation)
Read Bio Science Review Article: ATPHighlight key points and add to fileThis will not be marked, but will be looked at when files are taken in
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Structure of ATPATP
P P P
Adenine 3 phosphate groups
ribose
P P
ADP
2 phosphate groups
ribose
Adenine
http://www.worldofmolecules.com/3D/atp_3d.htm
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Synthesis of ATP from ADP
OHO
O
OHOH
OH
O
O
P
OH
OH
O
POH
OH
OH
O
P
Phosphoric acid and ADP undergo a condensation reaction
Water is eliminated and ATP is formed OH
OO
OHOH
OH
O
O
P
OH
O
O
P
OH
OH
O
P
OH2
Replay Close window
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• ATP is made of adenine, ribose and phosphate therefore it is classed as a……
• ATP is a small water soluble molecule therefore it easily transported inside cells.
• When each of the first two phosphates is hydrolysed from ATP approx 30kJ/mol of energy is released
• Usually just the first phosphate is removed resulting in ADP and phosphate
• This is a reversible reaction and ATP can be resynthesised from ADP and phosphate if energy is put back in.
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ATP + H2O ADP + Pi + 30kJ
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Energy currency• ATP is called an energy currency not an energy storage
molecule because it is an immediate source of energy
• Short term energy stores could be …
• Long term energy stores could …
• There are only about 5g of ATP in your body, but… at rest you will hydrolyse about 40kg of ATP per day!
• Because ATP is synthesised from ADP by the addition of a phosphate we say it is produced by phosphorylation
• The enzyme that does this is called ATP synthase.
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Synthesis of ATPADP can be phosphorylated in 3 ways;
• By reorganising chemical bonds and transferring phosphate directly from a substrate to ATP. This is called substrate level phosphorylation and occurs during respiration.
• By photophosphorylation which takes place in chloroplasts during photosynthesis and is linked to the absorption of light energy.
• By oxidative phosphorylation which takes place in mitochondria and is linked to the oxidation of substrates in respiration.
• http://highered.mcgraw-hill.com/olc/dl/120071/bio11.swf
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Chemiosmotic theory of ATP synthesis
• In both photophosphorylation and oxidative phosphorylation ATP is synthesised during the transfer of electrons along a chain of carrier molecules in either mitochondrial or chloroplast membranes.
• The electrical potential energy of the electrons is used to create a difference in hydrogen ion concentration across the membrane.
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Essentially the flow of these hydrogen ions back across the membrane down their conc gradient releases energy which is used to phosphorylate ADP.
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ATP synthase• ATP synthase is a protein
that spans the inner membrane of mitochondria and the thylakoid membrane of chloroplasts.
• It is through this protein that the hydrogen ions flow back into either the mitochondrial matrix or the chloroplast stroma
• http://www.dnatube.com/video/104/ATP-synthase-structure-and-mechanism
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• http://www.stolaf.edu/people/giannini/flashanimat/metabolism/atpsyn2.swf
• ATP synthase has three binding sites and a part of the molecule that rotates as the hydrogen ions pass through
• When the hydrogen ions pass through the ‘stalk’ part of the molecule rotates
• This produces the structural changes in the binding sites in the ‘knob’ as shown opposite
• The three phases are ;
• Loose binding of ADP and phosphate (L)
• Forming tightly bound ATP(T)
• Releasing ATP by opening (O)
• An animation of this can be seen at the following address
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Synoptic Questions
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1 Calculate the percentage decrease in bone density for women who drank more than seven fizzy drinks per week, compared with those women who drank none.
2 Describe the results.
3 A news story on this study said that scientists had found that fizzy drinks cause osteoporosis. Evaluate the evidence for this claim. You should consider the data and the methodology.
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COENZYMES• Organic molecules, essential for enzyme controlled reaction• Usually bind temporarily to the enzyme molecule• Carry a chemical group needed in or produced by the
enzyme-controlled reaction• Coenzyme exists in 2 forms – with and without the
chemical group – so they are re-cycled• Chemical group is removed by another enzyme-controlled
reaction• Coenzymes are often formed from vitamins• On their own they are catalytically inactive, but act as
“handles” for enzymes to attach
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Molecular structure of NAD
2 linked nucleotides=5-carbon sugar, ribose,Adenine,Phosphate group
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The structure of coenzyme A Derived from:-
Pantothenic acid (B vitamin)Adenosine (adenine + ribose)3 phosphatesCysteine (an amino acid)
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Chemical groups carried by coenzymes• Accepts hydrogen atoms and their electrons• It is reduced to NADH + H+
• It is derived from niacin (vitamin B)
NADNicotinomide
AdenineDinucleotide
• Accepts hydrogen atoms and their electrons• It is reduced to FADH2• It is derived from riboflavin (vitamin B)
FADFlavin Adenine Dinucleotide
• Carries Acetyl (Acetate or Ethanoate) group• It forms acetyl-coA• It is derived from pantothenic acid (vitamin B)
Coenzyme A
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The stages of respiration
Pyruvate dehydrogenase
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Coenzymes in respiration• NAD acts as a H carrier with the
enzyme pyruvate dehydrogenase.• Coenzyme A also works with
pyruvate dehydrogenase to form acetyl coenzyme A.
• Pyruvate dehydrogenase is inhibited by high NADH, ATP and acetyl coenzyme A. Can you think why this is useful?