• Wrong document? Swap it for free
  • Written by students who passed
  • Immediately available after payment
  • Read online or as PDF
Sell
Where do you study
Your language
Document preview thumbnail
Preview 3 out of 22 pages
Exam (elaborations)

Mcb 250 Molecular Genetrics Exam With Verified Questions And Answers || Guaranteed Pass || Latest Version 2026

Document preview thumbnail
Preview 3 out of 22 pages

MCB 250 MOLECULAR GENETRICS EXAM WITH VERIFIED QUESTIONS AND ANSWERS || GUARANTEED PASS || LATEST VERSION 2026 Part 1: DNA & RNA Structure (Questions 1–25) 1. Q: What are the six primary chemical elements of life? A: Carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur. 2. Q: What is the peak absorbance wavelength for DNA? A: 260 nm. 3. Q: Which amino acid(s) absorb light at 280 nm? A: Tryptophan and tyrosine (and to a lesser extent, phenylalanine). 4. Q: What is the structure of B-form DNA? A: A right-handed double helix with approximately 10 base pairs per turn, a major groove of ~22 Å, and a minor groove of ~12 Å. 5. Q: How does increasing salt content affect the melting temperature (Tm) of DNA? A: Increasing salt concentration stabilizes the DNA duplex by neutralizing the negative charge of the phosphate backbone, thereby increasing the Tm. 6. Q: What is Chargaff's rule? A: In double-stranded DNA, the amount of adenine equals thymine (A=T), and the amount of guanine equals cytosine (G=C). 7. Q: What type of bond connects nucleotides in a DNA strand? A: Phosphodiester bonds. 8. Q: What is the difference between a nucleoside and a nucleotide? A: A nucleoside consists of a nitrogenous base and a sugar; a nucleotide is a nucleoside with one or more phosphate groups attached. 9. Q: What is the difference between the major and minor grooves in DNA? A: The major groove is wider and exposes more chemical information for protein binding; the minor groove is narrower and less accessible. 10. Q: What are the stabilizing properties of B-form DNA? A: Base stacking, hydrogen bonding between complementary bases, and the hydrophobic effect. 11. Q: What is the role of the 2'-OH group in RNA? A: It makes RNA more reactive and less stable than DNA, contributing to RNA's shorter half-life. 12. Q: What are the three main types of RNA? A: Messenger RNA (mRNA), ribosomal RNA (rRNA), and transfer RNA (tRNA). 13. Q: What is the difference between prokaryotic and eukaryotic transcription and translation? A: In prokaryotes, transcription and translation occur simultaneously in the cytoplasm. In eukaryotes, transcription occurs in the nucleus, and translation occurs in the cytoplasm, so they do not occur simultaneously. 14. Q: What is the central dogma of molecular biology? A: DNA → RNA → Protein. 15. Q: What is the difference between a purine and a pyrimidine? A: Purines (adenine, guanine) have a two-ring structure; pyrimidines (cytosine, thymine, uracil) have a single-ring structure. 16. Q: What is the role of the phosphate backbone in DNA? A: It provides structural support and a negative charge that allows interaction with proteins and cations. 17. Q: What is the significance of the AT-rich region in DNA? A: It is easier to unwind because A-T base pairs have only two hydrogen bonds, compared to three in G-C pairs. 18. Q: What are the non-covalent bonds that contribute to protein structure? A: Hydrogen bonds, ionic bonds, van der Waals interactions, and hydrophobic interactions. 19. Q: What is the universal tree of life based on? A: Comparisons of ribosomal small subunit RNAs. 20. Q: What is the difference between the "tree of life" based on rRNA and other genes?

Content preview

MCB 250 MOLECULAR GENETRICS EXAM
WITH VERIFIED QUESTIONS AND ANSWERS ||
GUARANTEED PASS || LATEST VERSION 2026




Part 1: DNA & RNA Structure (Questions 1–25)
1. Q: What are the six primary chemical elements of life?
A: Carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur.
2. Q: What is the peak absorbance wavelength for DNA?
A: 260 nm.
3. Q: Which amino acid(s) absorb light at 280 nm?
A: Tryptophan and tyrosine (and to a lesser extent, phenylalanine).
4. Q: What is the structure of B-form DNA?
A: A right-handed double helix with approximately 10 base pairs per
turn, a major groove of ~22 Å, and a minor groove of ~12 Å.
5. Q: How does increasing salt content affect the melting temperature (Tm)
of DNA?
A: Increasing salt concentration stabilizes the DNA duplex by
neutralizing the negative charge of the phosphate backbone, thereby
increasing the Tm.
6. Q: What is Chargaff's rule?
A: In double-stranded DNA, the amount of adenine equals thymine
(A=T), and the amount of guanine equals cytosine (G=C).
7. Q: What type of bond connects nucleotides in a DNA strand?
A: Phosphodiester bonds.
8. Q: What is the difference between a nucleoside and a nucleotide?
A: A nucleoside consists of a nitrogenous base and a sugar; a nucleotide
is a nucleoside with one or more phosphate groups attached.

,9. Q: What is the difference between the major and minor grooves in DNA?
A: The major groove is wider and exposes more chemical information for
protein binding; the minor groove is narrower and less accessible.
10.Q: What are the stabilizing properties of B-form DNA?
A: Base stacking, hydrogen bonding between complementary bases, and
the hydrophobic effect.
11.Q: What is the role of the 2'-OH group in RNA?
A: It makes RNA more reactive and less stable than DNA, contributing to
RNA's shorter half-life.
12.Q: What are the three main types of RNA?
A: Messenger RNA (mRNA), ribosomal RNA (rRNA), and transfer RNA
(tRNA).
13.Q: What is the difference between prokaryotic and eukaryotic
transcription and translation?
A: In prokaryotes, transcription and translation occur simultaneously in
the cytoplasm. In eukaryotes, transcription occurs in the nucleus, and
translation occurs in the cytoplasm, so they do not occur simultaneously.
14.Q: What is the central dogma of molecular biology?
A: DNA → RNA → Protein.
15.Q: What is the difference between a purine and a pyrimidine?
A: Purines (adenine, guanine) have a two-ring structure; pyrimidines
(cytosine, thymine, uracil) have a single-ring structure.
16.Q: What is the role of the phosphate backbone in DNA?
A: It provides structural support and a negative charge that allows
interaction with proteins and cations.
17.Q: What is the significance of the AT-rich region in DNA?
A: It is easier to unwind because A-T base pairs have only two hydrogen
bonds, compared to three in G-C pairs.
18.Q: What are the non-covalent bonds that contribute to protein structure?
A: Hydrogen bonds, ionic bonds, van der Waals interactions, and
hydrophobic interactions.
19.Q: What is the universal tree of life based on?
A: Comparisons of ribosomal small subunit RNAs.
20.Q: What is the difference between the "tree of life" based on rRNA and
other genes?

, A: rRNA genes are highly conserved and provide a reliable measure of
evolutionary relationships.
21.Q: What is the role of the 9-bp DnaA box?
A: It is the binding site for DnaA-ATP at the origin of replication (oriC)
in E. coli.
22.Q: What is the "DNA unwinding element" (DUE)?
A: An AT-rich region adjacent to the DnaA boxes that is opened by
DnaA-ATP to create single-stranded DNA.
23.Q: What is the role of DnaC?
A: DnaC is a helicase loader that helps load DnaB (helicase) onto the
single-stranded DNA.
24.Q: What is the function of primase (DnaG)?
A: It synthesizes short RNA primers on each strand to provide a 3'-OH
for DNA polymerase.
25.Q: What is the sliding clamp (β clamp)?
A: It loads DNA polymerase III onto the DNA to start elongation.


Part 2: DNA Replication (Questions 26–50)
26.Q: What is the function of DnaA in E. coli?
A: DnaA initiates DNA replication by binding to the 9-bp DnaA boxes in
oriC.
27.Q: What ligands must be bound to DnaA for it to be active?
A: DnaA must be bound to ATP (not ADP) to be active.
28.Q: What is the consequence of over-initiation of DNA replication?
A: Multiple replication forks start before the previous round finishes,
leading to DNA over-replication, genomic instability, chromosome
breakage, and cell death.
29.Q: What is the consequence of under-initiation of DNA replication?
A: The chromosome is not fully replicated before cell division, so
daughter cells may receive incomplete genomes, which is lethal.
30.Q: What is the "end replication problem" in eukaryotic DNA replication?
A: DNA polymerases require a 3'-OH primer and can only add
nucleotides in the 5'→3' direction, so the ends of linear chromosomes
cannot be fully replicated.

Document information

Uploaded on
September 16, 2026
Number of pages
22
Written in
2026/2027
Type
Exam (elaborations)
Contains
Questions & answers
$21.99

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.
Sold
14
Followers
1
Items
1501
Last sold
1 month 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