Exam (elaborations)
BIOC 3021 Exam 4, UMN Exam Questions and Answers 100% Pass
BIOC 3021 Exam 4, UMN Exam
Questions and Answers 100% Pass
Base Pairing - 2 nucleotides on opposite complementary DNA or RNA
strands that are connected via hydrogen bonds
Hydrogen bonding of base pairs - requires geometrical correspondence
of hydrogen bond donors and acceptors allow only the "...
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BIOC 3021 Exam 4, UMN Exam
Questions and Answers 100% Pass
Base Pairing - ✔✔2 nucleotides on opposite complementary DNA or RNA
strands that are connected via hydrogen bonds
Hydrogen bonding of base pairs - ✔✔requires geometrical correspondence
of hydrogen bond donors and acceptors allow only the "right" pairs to form
stable interactions
Double Bonded BPs - ✔✔A and T
- bond between the amino H and carbonyl O
- bond between the ring NH and the ring N
Triple Bonded BPs - ✔✔G and C
- bond between carbonyl O to amino group H
- bond between carbonyl O to amino group H
- bond between amino H and ring N
Larger energy of hydrolysis than double bonded BPs
- higher affinity?
Model of DNA - ✔✔-bonds are planar
1
©JOSHCLAY 2024/2025. YEAR PUBLISHED 2024.
,-bases are slightly tilted
-H bonds and aromatic stacking of the bases stabilize the helix
Flow of Genetic Information - ✔✔DNA --> RNA --> Proteins
- DNA is a template for new DNA and RNA
- RNA is the template for protein synthesis
Semi-Conservative model - ✔✔2 parental strands--> 2 daughter strands
each with one parental and one new strand --> 2 strands have one new
strand and one parental and the other 2 have two new strands (this pattern
continues)
Strand Separation and Hybridization - ✔✔- light absorbance is less for
double strands of DNA than single strands
- allows monitoring of replication progress
-increased temperature induces separation
- Tm is the temperature where strands of DNA are 50% separated (melting
temperature)
-cooling allows strands to rebond
- hybridization will occur id strands have a significant amount of bases in
common
-single strand DNA can be hybridized to complementary RNA or DNA
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©JOSHCLAY 2024/2025. YEAR PUBLISHED 2024.
,Stem Loop Structure - ✔✔formed when single strand DNA or RNA
hybridizes to itself
- occasional mismatched regions create bubbles
- branch off from main chain
DNA Replication - ✔✔Process by which parental DNA is copied
- General pattern of replication involves the formation of 2 copies of
progeny DNA from one copy of parental DNA (semi conservative)
- Strands have great affinity for each other
- DNA helix is unwound to separate strands
- Replication is highly accurate
- Very rapid
- One strand is synthesized in a continuous fashion and another is
synthesized in fragments discontinuously
- Telomeres are added to the other end to maintain information at the other
end of the chromosome
DNA Polymerase - ✔✔Catalyzes the step-by-step addition of
deoxyribonucleotide units to a DNA chain
- New chain is assembled directly onto template by addition onto 5' end of
the primer strand
- (DNA)n + dNTP --> (DNA)n+1 + PPi
3
©JOSHCLAY 2024/2025. YEAR PUBLISHED 2024.
, - Cleavage of dNTP to dNMP allows an addition
- Template can be double or single
- Double stranded must be broken at 1+ sites
- Single must be bound to a primer strand with a free 3' hydroxyl
- Requires dATP, dTTP, dCTP and dGTP and Mg
Mechanism of DNA polymerase/synthesis - ✔✔- Synthesizes 5' --> 3'
- 3' hydroxyl of the terminal deoxyribose attacks the innermost alpha-
phosphate residue of the new dNTP
- Formation of the phosphodiester bridge between the primer and the new
unit
- 3' end of the new unit is now ready to do the same to the next dNTP
mRNA - ✔✔Template for protein synthesis or translation
- Distinct mRNA is produced for each gene in eukaryotes (less specific in
prokaryotes)
- Heterogeneous class of molecules
- Average length is 1.2 kb
- Determines the tRNA to be used
tRNA - ✔✔Carries amino acids in an activated form to the ribosome for
peptide-bond formation
- Sequence that AA are polymerized from tRNA is controlled by mRNA
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©JOSHCLAY 2024/2025. YEAR PUBLISHED 2024.