energy and enzymes almost all energy for life is derived from the sun. life requires energy. a...

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Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day is equivalent to one million Hiroshima-sized atomic bombs. Photosynthesis harnesses about 1% of that energy – 10,000 “atomic bomb equivalents” per day.

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Chemical Reactions Whether a chemical reaction will or won’t occur under particular conditions is determined by the laws of thermodynamics. If the overall amount of order is decreased by a reaction, the reaction is favored. Keeping it simple - If the overall amount of order is increased by a reaction, the reaction is not favored.

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Page 1: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Energy and Enzymes

Almost all energy for life is derived from the sun.

Life requires energy.

A “factoid” -

The sun’s energy that strikes Earth each day is equivalent to one million Hiroshima-sized atomic bombs.

Photosynthesis harnesses about 1% of that energy – 10,000 “atomic bomb equivalents” per day.

Page 2: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Chemistry and Life

One unromantic yet productive way of viewing life is to see it as a set of coordinated chemical reactions.

This leads to an obvious question – What determines what chemical reactions are possible?

Page 3: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Chemical Reactions

Whether a chemical reaction will or won’t occur under particular conditions is determined by the laws of thermodynamics.

If the overall amount of order is decreased by a reaction, the reaction is favored.

Keeping it simple -

If the overall amount of order is increased by a reaction, the reaction is not favored.

Page 4: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

The Direction of Spontaneous Reactions (and what it takes to go the other way)

Going this way is possible, but it requires the input of energy.

Page 5: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Life Requires Lots of Unfavorable Reactions – How Is This Possible?

By coupling favorable, energy-releasing reactions to unfavorable, energy-requiring reactions.

favorable reactions

unfavorable reactions

Page 6: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

The “Nature of Life” – Coupling Favorable, Energy-Yielding Reactions to Unfavorable, Energy-Requiring Reactions

Page 7: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Even When Cells Build Complex Molecules and Structures, the Second Law of Thermodynamics (Entropy or the “kids bedroom principle”)

Isn’t Violated

Page 8: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

ATP - Life’s Energy Currency

Energy is released when ATP is hydrolyzed (broken down) to ADP.

ATP is restored from ADP and an input of energy.

ATP’s energy is used to drive endergonic (energy-requiring) reactions.

Page 9: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

The Way ATP Often Works

Page 10: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Enzymes Speed Biochemical Reactions

Enzymes are biological catalysts – substances that speed a reaction without being altered in the reaction.

Most enzymes are proteins, some are RNA.

Enzymes are essential for life.

Model of the surface of an enzyme.

Page 11: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Enzymes Lower a Reaction’s Activation Energy

Page 12: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Enzyme Action

Page 13: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

The Fit Between Enzyme and Substrate is Critical and Precise

Hexokinase, an enzyme (blue), binding its substrate, glucose (yellow).

Page 14: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

The active site of an enzyme is where substrate is bound.

Many Enzymes Work by Altering the Shape of Their Substrates

Page 15: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

The synthesis of biological molecules often requires many enzyme-catalyzed steps.

The entire set of steps is a metabolic pathway.

Metabolic Pathways

Page 16: Energy and Enzymes Almost all energy for life is derived from the sun. Life requires energy. A “factoid” - The sun’s energy that strikes Earth each day

Enzyme Activity is Often Regulated

Feedback inhibition - a common form of enzyme regulation in which the product inhibits the enzyme .