Terminal respiration Flashcards

1
Q

Describe the electron transport chain

A

Has 4 complexes, l ll lll lV

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2
Q

Describe complex l

A

Oxidises NADH
Pass high energy e- to ubiquinone to make ubiquinol (QH2)
Uses Fe-S centres (Redox centres)
Pumps 4H+ to intermembrane space

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3
Q

Describe complex ll

A

Oxidises FADH2
Pass high energy e- to ubiquinone to make ubiquinol (QH2)
Uses Fe-S centres (Redox centres)
Enzyme (Succinate used in CAC)

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4
Q

Describe complex lll

A

Takes e- from QH2 passes them to cytochrome c
1 QH2 is oxidised to two reduced cytochrome c
Pumps 4H+ protons into the intermembrane space

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5
Q

Describe complex lV

A

Takes e- from cytochrome c and passes them to molecular O2
e- go through Fe-Cu centres
Pumps 2H+ protons into the intermembrane space

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6
Q

Describe energy conservation through the chain

A

Oxidation of NADH, FADH2, ubiquinol and cytochrome c creates proton gradient across inner mitochondrial membrane

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7
Q

What is the function of O2

A

Converted from O2 to H2O
Protons from step lV are used
O2 is final electron acceptor and allows for proton concentrations to be maintained

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8
Q

What is the proton motive force

A

Protons outside inner membrane store potential energy
Protons flow down conc. gradient, energy is released (PMF)

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9
Q

Describe ATP synthesis

A

Protons flow down conc. gradient to mitochondria matrix
ATPase mechanism allows protons to pass through
Flow through ATPase releases energy stored in gradient to convert ADP + Pi to ATP

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10
Q

Describe ATPase

A

F0 – membrane bound proton conducting unit
10 subunits

Separate subunit connects F0 to F1

F1 – mitochondrial matrix
Catalyst for ATP synthesis
Produces lots of ATP from the proton motive force energy collected by F0

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11
Q

What is the binding change mechanism

A

Rotation of F0 causes conformational change in F1
Conformation change catalyses ADP + Pi = ATP and release of ATP

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12
Q

What is coupling/uncoupling

A

If inner mitochondrial membrane becomes permeable to protons, no proton gradient, no ATP and is now uncoupled
Energy from e- passing through terminal respiration releases heat

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