4.1 INTRODUCTION TO CELLULAR RESPIRATION & FERMENTATION Flashcards

1
Q

Products o f photosynthesis
(sugars and O2) are used in

A

energy releasing reactions in
aerobic cells

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2
Q

Potential energy extracted from
food through

A

oxidation is used to
synthesize ATP

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3
Q

Chemical energy (now stored in
ATP) can be

A

can be readily released
and used by cells

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4
Q

When O2 is unavailable , anaerobic cells have

A

alternative ways to release energy from food molecules

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5
Q

Aerobic Cellular Respiration

A

A process that extracts energy from food in the presence of O2

The energy is used to synthesize ATP from ADP + Pi

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6
Q

Aerobic Cellular Respiration takes place in

A

Takes place in most Eukaryotes and some Prokaryotes

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7
Q

Obligate Aerobe

A

an organism that must have oxygen to live
(Ex . humans)

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8
Q

Obligate Anaerobe

A

an organism that cannot survive in an environment with oxygen (Ex . some species o f bacteria)

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9
Q

Facultative Anaerobes

A

An organism that can survive with or w/o O2
(Ex . yeast and E . coli bacteria living in your gut)

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10
Q

4 stages of Aerobic Cellular Respiration

Each stage involves the transfer of free energy, producing ATP in one of two ways:

A
  1. Substrate-level Phosphorylation

Forms ATP directly in an enzyme-catalyzed rxn through the trans fer o f a phosphate group from one molecule to an ADP molecule

  1. Oxidative Phosphorylation

Forms ATP indirectly through a series o f redox rxns involving a final electron acceptor

  • In Aerobic Cellular Respiration, OXYGEN is
    the final electron acceptor
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11
Q

1.Glycolysis (in cytosol)

A

‒ Enzymes split glucose into 2 pyruvate molecules

‒ 2 ATP and 2 NADH are synthesized
(via substrate-level phosphorylation)

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12
Q

2.Pyruvate Oxidation (in mitochondria)

A

‒ Each pyruvate is oxidized, producing CO2 (waste), NADH and Acetyl-CoA

(acetyl group + coenzyme A)

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13
Q

3.Citric Acid Cycle (in mitochondria)

A

‒ Acetyl-CoA enters a metabolic cycle, where the acetyl group is oxidized to CO2

‒ ATP, NADH, and FADH2 are synthesized

  • (via substrate-level phosphorylation)
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14
Q

4.Electron Transport / Oxidative
Phosphorylation (in mitochondria)

A

‒ NADH and FADH2 are oxidized

‒ High energy e- and H+ are passed from one
oxidizing agent to the next until they are
transferred to O2, producing H2O

‒ Free energy released during electron transport
is indirectly used to make ATP by Oxidative Phosphorylation

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15
Q

Organelle involved in the
production of ATP

A

Mitochondrial

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16
Q

The mitochondria is made of…

A

Made of 2 membranes
(outer and inner)

17
Q

Intermembrane space is

A

the space b /w the outer and inner

18
Q

Matrix is

A

the interior aqueous
environment of a mitochondria

19
Q

Some prokaryotes undergo _________ _________ ________________ without ____________

A

aerobic cellular respiration without mitochondria

20
Q

Glycolysis, Pyruvate Oxidation, and the Citric Acid Cycle
occur in

A

the cytosol

21
Q

Electron Transport occurs on

A

internal membranes

22
Q

Anaerobic Pathways

A

Many organisms (e.g.,
prokaryotes and protists) can
extract energy from food w/o using O2

23
Q
  1. Anaerobic Respiration
A

Similar to aerobic, with a series o f steps, but uses an inorganic molecule other than O2 as the final oxidizing agent

24
Q
  1. Fermentation
A

‒ Does NOT use an electron transpor t system

‒ Relies on an organic compound to act as the final
oxidizing agent

25
Q

Both Anaerobic Respiration and Fermentation are…

A

Both are catabolic (energy-yielding) processes

Released free energy (less than aerobic) is used
to make ATP