Latest Edition | Verified Questions with Correct
Answers | Graded A+
ASCP Molecular Biology Exam Prep | Updated 2025/2026 edition with fully verified, real
exam-based questions and correct answers. Topics include molecular genetics, DNA/RNA
structure and function, PCR and amplification techniques, electrophoresis, sequencing,
molecular oncology, infectious disease testing, quality assurance, laboratory safety, and ethical
considerations in molecular diagnostics.
Overview
This comprehensive prep resource provides authentic ASCP Molecular Biology exam-style
questions with 100% correct answers. Designed to strengthen molecular diagnostics knowledge,
reinforce laboratory testing principles, and ensure exam success. Rated A+ for accuracy,
reliability, and exam alignment. The ASCP Molecular Biology exam typically includes 100
questions, covering molecular science, techniques, and clinical applications.
Answer Format
Correct answers are highlighted in bold green. Each answer includes a rationale to explain key
molecular biology concepts, laboratory procedures, and critical reasoning for clinical
application.
Exam Questions
1. What is the primary function of DNA polymerase in PCR?
A. Denature DNA
B. Synthesize new DNA strands
C. Anneal primers
D. Degrade RNA
Rationale: DNA polymerase extends primers by adding nucleotides, forming new DNA
strands during PCR amplification.
2. Which nucleotide base pairs with adenine in DNA?
A. Cytosine
B. Thymine
C. Guanine
, D. Uracil
Rationale: Adenine pairs with thymine via two hydrogen bonds in DNA’s double helix
structure.
3. What is the purpose of the denaturation step in PCR?
A. Anneal primers
B. Separate DNA strands
C. Extend DNA
D. Cool the reaction
Rationale: Denaturation (typically at 95°C) breaks hydrogen bonds, separating
double-stranded DNA into single strands.
4. Which technique is used to separate DNA fragments by size?
A. PCR
B. Gel electrophoresis
C. Sequencing
D. Hybridization
Rationale: Gel electrophoresis uses an electric field to separate DNA fragments based
on size, with smaller fragments moving faster.
5. What is the role of primers in PCR?
A. Degrade DNA
B. Provide a starting point for DNA synthesis
C. Denature DNA
D. Detect mutations
Rationale: Primers are short DNA sequences that bind to target DNA, initiating
polymerase activity.
6. Which enzyme is used to convert RNA to cDNA in RT-PCR?
A. DNA polymerase
B. Reverse transcriptase
C. Taq polymerase
D. Ligase
Rationale: Reverse transcriptase synthesizes complementary DNA (cDNA) from an
RNA template.
7. What is a common application of real-time PCR?
A. DNA sequencing
B. Quantify gene expression
C. Protein analysis
D. Cell culture
Rationale: Real-time PCR monitors DNA amplification in real-time, often used to
measure gene expression levels.
, 8. In Sanger sequencing, what terminates DNA strand synthesis?
A. Primers
B. Dideoxynucleotides (ddNTPs)
C. Taq polymerase
D. Magnesium ions
Rationale: ddNTPs lack a 3’ hydroxyl group, halting DNA elongation in Sanger
sequencing.
9. What is a key ethical consideration in molecular diagnostics?
A. Share patient data publicly
B. Maintain patient confidentiality
C. Alter test results
D. Ignore quality control
Rationale: Confidentiality protects patient privacy, adhering to HIPAA and ethical
standards.
10.Which molecular technique detects specific DNA sequences?
A. Western blot
B. Southern blot
C. Northern blot
D. ELISA
Rationale: Southern blot uses hybridization to detect specific DNA sequences.
11.What is the purpose of a thermocycler in PCR?
A. Sequence DNA
B. Cycle through temperature changes
C. Purify DNA
D. Analyze proteins
Rationale: A thermocycler automates denaturation, annealing, and extension steps in
PCR.
12.Which genetic mutation is commonly tested in molecular oncology?
A. Blood type
B. BRCA1/BRCA2
C. Hemoglobin levels
D. Glucose metabolism
Rationale: BRCA1/BRCA2 mutations are linked to breast and ovarian cancer risk.
13.What is the purpose of a positive control in a PCR assay?
A. Inhibit amplification
B. Confirm the assay is working correctly
C. Denature DNA
D. Detect contamination
Rationale: Positive controls ensure the PCR reagents and conditions are functional.