Written by students who passed Immediately available after payment Read online or as PDF Wrong document? Swap it for free 4.6 TrustPilot
logo-home
Document preview thumbnail
Preview 4 out of 118 pages
Exam (elaborations)

WGU C785 FINAL EXAM 300 ACTUAL QUESTIONS AND CORRECT ANSWERS WITH RATIONALE LATEST UPDATE ALREADY GRADED A+

Document preview thumbnail
Preview 4 out of 118 pages

Prepare for success on the WGU C785 Biochemistry Final Exam with this comprehensive study guide featuring 300 authentic practice questions with detailed rationales covering all essential biochemistry and molecular biology content for nursing students. This essential resource covers every critical exam domain including protein structure (primary, secondary, tertiary, quaternary) and function, enzyme kinetics and regulation (competitive, noncompetitive, uncompetitive inhibition, feedback inhibition, induced fit), DNA replication and repair mechanisms (nucleotide excision repair, mismatch repair, base excision repair, non-homologous end joining), transcription and translation, metabolic pathways including glycolysis, gluconeogenesis, citric acid cycle, oxidative phosphorylation, beta-oxidation, fatty acid synthesis, ketogenesis, amino acid metabolism, urea cycle, and pentose phosphate pathway, hormone signaling (insulin, glucagon, epinephrine, cortisol), genetic disorders including sickle cell anemia, phenylketonuria, galactosemia, glycogen storage diseases (von Gierke, McArdle), and metabolic integration across tissues. Each question is carefully crafted to reflect actual exam formats with multiple-choice options, correct answers, and in-depth rationales explaining the underlying biochemical principles, molecular mechanisms, and clinical applications. Whether you are preparing for your WGU C785 final exam, nursing school biochemistry requirement, or advancing your understanding of metabolic pathways for clinical practice, this guide provides the rigorous practice and knowledge reinforcement needed to excel. Ideal for WGU nursing students, pre-medical students, and healthcare professionals, this comprehensive question bank ensures you are fully prepared for the culminating assessment of your biochemistry course.

Content preview

WGU C785 FINAL EXAM 300 ACTUAL QUESTIONS
AND CORRECT ANSWERS WITH RATIONALE
LATEST UPDATE ALREADY GRADED A+


This comprehensive WGU C785 Final Exam practice guide features 300
unique, multiple-choice questions designed to mirror the biochemistry and
molecular biology content of the WGU C785 exam. Each question includes the
correct answer and a detailed, evidence-based rationale explaining the
underlying biochemical principles, molecular mechanisms, and clinical
applications. The questions comprehensively cover major topics including
protein structure, enzyme kinetics and regulation, DNA replication and
repair, transcription and translation, metabolic pathways (glycolysis, TCA
cycle, oxidative phosphorylation, gluconeogenesis, fatty acid metabolism, and
amino acid metabolism), hormone signaling, genetic disorders, and metabolic
integration. No questions are repeated, ensuring a thorough review of diverse
biochemistry topics. This resource is ideal for WGU nursing students
preparing for the C785 final examination, offering rigorous self-assessment
and knowledge reinforcement across the full spectrum of biochemistry
essential for clinical practice.


Question 1
Which level of protein structure is disrupted through the hydrolysis of peptide
bonds?
A) Quaternary structure
B) Tertiary structure
C) Primary structure
D) Secondary structure

Answer: C) Primary structure

Rationale: The primary structure of a protein is the linear sequence of amino acids
held together by peptide bonds. Peptide bonds are formed by dehydration reactions
and disrupted by hydrolysis. Disruption of peptide bonds directly affects the
primary structure, which in turn affects all higher levels of protein folding.

---

,Question 2
A mutation in the beta-hemoglobin gene results in the replacement of glutamate at
position 6 with valine, leading to sickle cell anemia. The original amino acid in a
healthy patient is glutamate, which is negatively charged. The mutated amino acid
is valine, which is non-polar. If the beta hemoglobin gene in a patient with sickle-
cell anemia were to be edited so that the valine was replaced with a different amino
acid, which replacement would be expected to have the best clinical outcome?
A) Any non-polar amino acid
B) Any polar uncharged amino acid
C) Any positively charged amino acid
D) Any negatively charged amino acid

Answer: D) Any negatively charged amino acid

Rationale: The best amino acid to replace valine so that the patient is healthy again
would be the one most like glutamate, which is negatively charged. The
hydrophobic interaction caused by valine creates the sickle cell phenotype.
Replacing valine with a negatively charged amino acid would restore normal
hemoglobin function.

---

Question 3
Secondary, tertiary, and quaternary levels of protein structure can all be impacted
by exposing a protein to which treatment?
A) Change of a hydrophobic amino acid to a different hydrophobic amino acid
B) Addition of a reducing agent
C) Placement of the protein in a solution with a low pH
D) Increase in the concentration of the protein in solution

Answer: C) Placement of the protein in a solution with a low pH

Rationale: Changes in pH affect hydrogen bonds and ionic bonds. Hydrogen bonds
in the backbone of amino acids occur in secondary structure, and both hydrogen
bonds and ionic bonds occur in the side chains of amino acids in tertiary structure.
Quaternary structure is also impacted because subunit interactions depend on these
same forces.

---

,Question 4
An increase in beta-pleated sheet structure in some brain proteins can lead to an
increase in amyloid deposit formation, characteristic of some neurodegenerative
diseases. What is the primary biochemical process that follows the increase in beta-
pleated sheet structure that leads to the development of the amyloid deposits?
A) An increase in glycogen formation in the brain cells
B) Aggregation of the proteins in the brain
C) Secretion of glucagon, leading to excessive ketogenesis
D) An increase in anaerobic metabolism of glucose in the brain

Answer: B) Aggregation of the proteins in the brain

Rationale: This question describes changes in protein structure. Aggregation
occurs when proteins clump together inappropriately, causing plaques like amyloid
deposits to accumulate. The increase in beta-pleated sheet structure promotes
protein aggregation.

---

Question 5
Which level of protein structure is determined by the sequence of amino acids?
A) Secondary structure
B) Quaternary structure
C) Tertiary structure
D) Primary structure

Answer: D) Primary structure

Rationale: The primary structure of a protein is simply the sequence of amino acids
held together by peptide bonds. This sequence determines all higher levels of
protein structure.

---

Question 6
Which force is most influential in determining the secondary structure of a protein?
A) Hydrophobic effect
B) Disulfide bonding
C) Hydrogen bonding

, D) Electrostatic interactions

Answer: C) Hydrogen bonding

Rationale: The secondary structure of a protein is built by hydrogen bonds between
the carboxyl groups and amino groups on the backbones of the amino acids. These
hydrogen bonds form the alpha helix and beta pleated sheet structures.

---

Question 7
Which amino acid would most likely participate in hydrogen bonds?
A) A non-polar amino acid with only CH groups
B) A polar, uncharged amino acid with an OH group
C) A non-polar amino acid with sulfur
D) A non-polar amino acid with CH3 groups

Answer: B) A polar, uncharged amino acid with an OH group

Rationale: Polar, uncharged amino acids containing oxygen or NH groups can
form hydrogen bonds. The OH group on the side chain provides a hydrogen bond
donor and acceptor.

---

Question 8
Which portion of the amino acid is the variable group that differs between amino
acids?
A) Amino group
B) Carboxyl group
C) Side chain
D) Alpha carbon

Answer: C) Side chain

Rationale: The side chain is the variable group of the amino acid, also called the R
group. Every amino acid has the same amino group, carboxylic acid group, and an
alpha carbon, but the side chain is different for each amino acid.

---

Document information

Uploaded on
July 27, 2026
Number of pages
118
Written in
2025/2026
Type
Exam (elaborations)
Contains
Questions & answers
$22.99

Wrong document? Swap it for free Within 14 days of purchase and before downloading, you can choose a different document. You can simply spend the amount again.
Written by students who passed
Immediately available after payment
Read online or as PDF

Seller avatar
Reputation scores are based on the amount of documents a seller has sold for a fee and the reviews they have received for those documents. There are three levels: Bronze, Silver and Gold. The better the reputation, the more your can rely on the quality of the sellers work.
PrepPulse
3.3
(3)
Sold
26
Followers
0
Items
1414
Last sold
1 day ago


Why students choose Stuvia

Created by fellow students, verified by reviews

Quality you can trust: written by students who passed their tests and reviewed by others who've used these notes.

Didn't get what you expected? Choose another document

No worries! You can instantly pick a different document that better fits what you're looking for.

Pay as you like, start learning right away

No subscription, no commitments. Pay the way you're used to via credit card and download your PDF document instantly.

Student with book image

“Bought, downloaded, and aced it. It really can be that simple.”

Alisha Student

Working on your references?

Create accurate citations in APA, MLA and Harvard with our free citation generator.

Working on your references?

Frequently asked questions