CUSTOM BIOLOGY
19th Edition
ISBN: 9781323945490
Author: Urry
Publisher: Pearson Custom Publishing
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Textbook Question
Chapter 8, Problem 8TYU
EVOLUTION CONNECTION Some people argue that biochemical pathways are too complex to have evolved because all intermediate steps in a given pathway must be present to produce the final product. Critique this argument. How could you use the diversity of
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How could you use the diversity of metabolic pathways that produce the same or similar products to critique this argument?
Rank the steps from first to last.
a. New enzymes cause modification of the pathway in an advantageous way. b. The biochemical pathway is gradually modified. c. A pathway exists and accomplishes some functions. d. An organism with cellular enzymes has mutations that allow new enzymes to arise.
A dichotomous key works by determining positive and negative reactions to different biochemicals. Why does this method allow us to identify one species of organism from another? – for this question, do not describe the dichotomous key procedure, think about why it works, what are biochemical reactions based on? Think enzymatic pathways, what are enzymes, what are they a reflection of? Keep the answer between 2-3 sentences
Examine the figure below, which compares the energetics of a catalyzed and uncatalyzed reaction during
the progress of the reaction from substrate (S) to product (P). The highest peak in such a diagram
corresponds to the transition state, which is an unstable, high-energy arrangement of substrate atoms
that is intermediate between substrate and product. The free energy required to surmount this barrier
to the reaction is termed the activation energy. Enzymes function by lowering the activation energy,
thereby allowing a more rapid approach to equilibrium.
UNCATALYZED
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Chapter 8 Solutions
CUSTOM BIOLOGY
Ch. 8.1 - Prob. 1CCCh. 8.1 - Describe the forms of energy found in an apple as...Ch. 8.1 - WHAT IF? If you place a teaspoon of sugar in the...Ch. 8.2 - Cellular respiration uses glucose and oxygen,...Ch. 8.2 - VISUAL SKILLS How would the processes of...Ch. 8.2 - Prob. 3CCCh. 8.3 - How does ATP typically transfer energy from an...Ch. 8.3 - Prob. 2CCCh. 8.3 - MAKE CONNECTIONS Does Figure 8.11a show passive...Ch. 8.4 - Many spontaneous reactions occur very slowly. Why...
Ch. 8.4 - Prob. 2CCCh. 8.4 - WHAT IF? Malonate is an inhibitor of the enzyme...Ch. 8.4 - Prob. 4CCCh. 8.5 - How do an activator and an inhibitor have...Ch. 8.5 - Prob. 2CCCh. 8 - Explain how the highly ordered structure of a cell...Ch. 8 - Explain the meaning of each component in the...Ch. 8 - Describe the ATP cycle: How is ATP used and...Ch. 8 - How do both activation energy barriers and enzymes...Ch. 8 - Prob. 8.5CRCh. 8 - Choose the pair of terms that correctly completes...Ch. 8 - Prob. 2TYUCh. 8 - Which of the following metabolic processes can...Ch. 8 - Prob. 4TYUCh. 8 - Some bacteria art metabolically active in hot...Ch. 8 - If an enzyme is added to a solution where its...Ch. 8 - Prob. 7TYUCh. 8 - EVOLUTION CONNECTION Some people argue that...Ch. 8 - Prob. 9TYUCh. 8 - WRITE ABOUT A THEME: ENERGY AND MATTER Life...Ch. 8 - Prob. 11TYU
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- Which statement about metabolic pathways is false? OA. A specific enzyme catalyzes each transformational step. B. Chemical transformations occur in a series of separate chemical reactions. O C. Inhibitors that target some key enzymes in a pathway can slow the rate of reaction. D. Activators that target some key enzymes in a pathway can increase the rate of reaction. E. In prokaryotes, reactions in a pathway are located in multiple compartments.arrow_forwardConsider the biochemical pathway below, where A, B, and C are substrates and products and E1 and E2 are the enzymes that catalyze the reactions. Enzyme 1 (E1) can utilize which of the following? either A or B as substrate, but not both. only B as substrate. both A and B as substrates. neither A nor B as substrate. only A as substrate.arrow_forwardUsing a series of arrows, draw the branch metabolic reaction pathway described by the following statements, and then answer the questions at the end. Use red arrows and X minus signs (-) to indicate inhibitions. The image below gives you an idea of how to start out for creating the pathway. m a. L can form either M or N b. M can form O c. O can form either P or R d. P can form Q e. R can form S f. O inhibits the reaction of L to form M g. Q inhibits the reaction of O to form P h. S inhibits the reaction of O to form R Which step(s), if any, in the above pathway above exhibit feedback inhibition? Selected Answer: Answers: f and a f, g, and hi f and a g harrow_forward
- Which metabolic reaction is convergent? Why?arrow_forwardMost enzymes are quite specific, catalyzing a particular reaction on a set of substrates that are structurally quite similar to one another. Why are highly specific enzymes advantageous from a biological perspective? They allow catalyzed reactions to produce potentially useful by-products. They allow for the sharing of enzymes by multiple metabolic pathways. They allow an inhibitor to simultaneously inhibit multiple steps in a metabolic pathway. They allow control of which reactions occur at appreciable rates. Why are most enzymes highly specific from a chemical perspective? Enzymes generally requires a tight fit between enzyme and substrate. Interactions between the enzyme and the substrate stabilize the substrate. The active sites of enzymes are always identical in shape to the substrates they bind. The formation of weak interactions between the enzyme and the substrate requires energy.arrow_forwardDiscuss how enzymes make life possible from a biochemical perspective. Include activation energy barrier,rate of reaction,metabolic regulation, substrate specificity and spontainity of reactionarrow_forward
- Indicate whether each of the following statements about an enzyme active site is true or false. a. It is the location where substrate molecules are produced. b. It always has a fixed, rigid geometry. c. It always has a geometrical shape exactly complementary to that of substrate. d. It always accomodates several structurally related substrates. e. It is the location where substrate molecules are converted to product molecules. f. It always has a shape that has a degree of flexibility to it. g. it always accomodates only one specific substrate.arrow_forwardIt is said that “You are what you eat.” The molecules that we consume undergo biochemical reactions to be converted into the biological molecules that help our cells to perform many important roles. Explain the importance of a structural biological molecule and how its structure relates to its function. Describe or illustrate how biochemical reactions produce the biological molecule. You may find it helpful to include a diagram of the biological molecule as part of your response.arrow_forwardWould you describe metabolic pathways as inherently wasteful or inherently economical, and why?arrow_forward
- Metabolism is essential to life and is the process by which cells make energy to carry out all of the processes required for them to survive. Metabolism requires that the organism transport substances from the environment into the cell to utilize in their metabolic pathways. Bacteria have a diverse array of potential metabolic processes to make energy. Given the information below (A. and B.), describe how the organisms would make ATP in the environment they are found. Make sure to discuss in detail each of the pathways, including the starting products, end products, components of the ETC (if applicable), how the cell makes ATP during this process, where in the cell each of these pathways occur and the transport mechanism(s) utilized to move the starting products from the environment into the cell. An anaerobic organism that is only able to ferment lactose.arrow_forwardGenerate a concept map using the following terms: 1. Substrate 2. Reactant 3. Enzyme 4. Catalyst 5. Product 6. Induced fit 7. Enzyme-Substrate Complex 8. Activation Energy 9. Metabolism 10. Metabolic pathway 11. Feedback Inhibition 12. Active Site.arrow_forwardGenetic engineering of enzymes to be utilized for bioremediation efforts results in which of the following changes? (you may select more than one) Decrease in the concentration required to reach one half maximal velocity. Increase in hydrogen bonding between substrate and enzyme. Primary sequence alterations resulting in 3D structural changes in the substrate binding site. Decrease in the maximum activity the enzyme can achieve in ideal conditions.arrow_forward
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