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Endergonic and Exergonic Reactions
Endergonic reaction: requires energy, usually ATP Exergonic reaction: releases energy, occurs spontaneously energy products + + ∆G > 0 reactants + reactants products energy ∆G < 0
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If exergonic reactions occur spontaneously, why isn’t the paper in front of you on fire?
An exergonic reaction
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Just as the person may need a push to get started down a hill, many of the exergonic reactions that living organisms depend on for survival may need a “push”. ∆G < 0
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Figure 6.12 Energy profile of an exergonic reaction
EA = activation energy
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Example of an enzyme-catalyzed reaction: Hydrolysis of sucrose
energy +
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In living organisms the “somethings” that provide that push are called enzymes
Without enzyme: With enzyme:
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Figure 6.13 Enzymes lower the barrier of activation energy
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Most enzymes are protein molecules with a specific 3-dimensional shape
Active site substrate There are over 5000 enzymes known to exist, each of which is specific to a different reaction. Nearly every chemical process that takes place in living organisms is facilitated by an enzyme. enzyme “induced fit”
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Enzymes catalyze reactions in living organisms:. 1
Enzymes catalyze reactions in living organisms: Bring reactant molecules close together 2. Make bonds easier to break/form
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Notes about enzymes Enzymes only increase the rate of exergonic reactions, they can’t cause non-spontaneous reactions to occur Only the substrate will be altered, the enzyme will be released to work again Enzymes are one type of catalyst
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What determines how well an enzyme works?
Binding of enzyme and substrate Temperature at which the enzyme functions
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Can a species’ enzymes be shaped by natural selection?
Does the same enzyme show variation from one individual to another? Is the form of enzyme an individual produce a heritable trait? Does the form of enzyme individual produce affect its survival/reproduction?
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Figure 6.16 Environmental factors affecting enzyme activity
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