Enzymes
Kinetics
Regulation
Inhibition
Ch: 4 - Protein Folding
100

What do enzymes NOT change (4)?

Free energy, Keq, ΔG, direction of reaction

100

What does a lower Km indicate?

Higher substrate affinity

100

What does the enzyme tyrosinase do in cats?

Increases eumelanin

100

What are the three types of reversible inhibition and their brief differences? The inhibitor and target enzyme bind through which kind of bond?

1. competitive (inhibitor competes with substrate for free enzyme) 

2. uncompetitive (inhibitor binds to ES complex)

3. noncompetitive (inhibitor can bind to the free enzyme or ES complex -pure or mixed)

noncovalent bonds

100

What stage is considered the first step in protein folding?

Secondary structure

200

What do enzymes do? How do they do it? What happens to them after a reaction is complete?

Act as catalysts, speed up reactions by lowering activation energy

Active site on enzyme fits into substrate - Induced fit model

Enzymes can be reused

200

What happens to Km if enzyme concentration is increased?

Nothing

200

Describe how temperature impacts enzyme activity over time

Enzyme activity increases to a threshold then rapidly declines

200

What happens to Km and Vmax during competitive inhibition? Why?

Km increases, Vmax stays the same

Takes more substrate to reach half of vmax

200

Are proteins highly stable structures? Why?

No - they have to remain dynamic enough to undergo folding.

300

Explain the three relationships between Keq, ΔG˚, and reaction direction (chart from lecture slides).

Keq > 1.0, (-) ΔG˚, forward reaction

Keq = 1.0, 0 ΔG˚, equilibrium

Keq < 1.0, (+) ΔG˚, backwards reaction

300

An accumulation of this organic molecule causes hangover symptoms

acetaldehyde

300

Why does enzyme activity diminish at high temperatures?

High temps break weak interactions and denatures enzymes

300

What happens to Km and Vmax during uncompetitive inhibition? Why?

Km and Vmax both decrease

formation of ES is favored

product formation diminishes

300

How would you best describe the structural characteristics of α -keratin? (4)

Pairs of α -helices

Form coiled coils

Coiled coils held together by disulfide bridges

Rich in hydrophobic residues

400

What is the activation energy of a reaction?

The difference in free energy between the substrate and the transition state

400

What are characteristics of allosteric enzymes that michaelis-menten enzymes do not share (3)?

Cooperative binding

multiple active sites

can undergo T to R transition


400

How does a change in pH alter the rate of enzymatic activity?

Changes the charge of the enzyme

400

What happens to Km and Vmax during noncompetitive inhibition? Why?

Km stays the same, Vmax decreases

doesn't alter enzme's substrate affinity

reduces amount of enzyme available to make product

400

What is urea? What does it affect?

Protein-denaturing agent, disrupts noncovalent interactions (hydrogen bonding, hydrophobic interactions)

500

If a product has lower free energy than the substrate, what will happen at equilibrium?

ΔG < 0, exergonic, so Keq > 1, reaction will move forward, there will be more product at equilibrium

500

Describe what the graphs would look like for:

-Rate of reaction

-Michaelis-Menten Model (+ what is Km)

-Lineweaver Burk Plot (+ what is slope and intercepts)

Rate of reaction: [P] vs. time, graph curves and levels off

MM: V0 vs [S], Km = [S] needed to reach Vmax/2

Lineweaver Burk: 1/V0 vs 1/[S], x-intercept = -1/Km, y-intercept = -1/Km, slope = Km/Vmax, linear

500

What are the optimal pH's for pepsin and chymotrypsin? What does optimal pH mean for enzyme activity? How would this look in a graph?

pepsin - 2

chymotrypsin - 8

optimal pH = max enzyme activity, bell curved graph

500

What is the difference between pure and mixed inhibitors (noncompetitive inhibition)?

pure - binds to the free enzyme or enzyme substrate complex equally

mixed- binds to the free enzyme or ES complex unequally

500

A protein has become misfolded and exposed hydrophobic regions that could cause it to aggregate. What class of proteins would help prevent this aggregation? What do they do?

Chaperones - temporarily bind to exposed hydrophobic regions of misfolded/unfolded proteins to prevent them from aggregating and help them regain their proper folded structure. 

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