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Test your basic knowledge |
Molecular Biotechnology 2
Start Test
Study First
Subject
:
engineering
Instructions:
Answer 50 questions in 15 minutes.
If you are not ready to take this test, you can
study here
.
Match each statement with the correct term.
Don't refresh. All questions and answers are randomly picked and ordered every time you load a test.
This is a study tool. The 3 wrong answers for each question are randomly chosen from answers to other questions. So, you might find at times the answers obvious, but you will see it re-enforces your understanding as you take the test each time.
1. Type I and III: cut and modify DNA by methylation - binding and cutting sites differ - requires ATP to move along DNA - and not efficient for DNA manipulation Type II: has only restriction activity - no modification; cutting sites are adjacent or wit
3 Types of Restriction Endonuclease
Chromosome walking
Why clone genes
Bacteriophage Lambda
2. 1. If a product is formed: PCR can be unsuccessful if the quality of DNA is poor - one of the primers doesn't fit - too much starting template (non - specific binding) - optimization 2. Product is of the right size: primers may bind to different part
Pyrosequencing Step 4
Check PCR Product
Rules for primer
Cloning Vector
3. Strong positive reactions with abundant nucleic acid
Applications of PCR
Ct < 29 (Cycle threshold)
Restriction endonucleases
Autoradiogram
4. Sequencing primer is hybridized to a single stranded DNA and incubated with enzymes - DNAP - ATP sulfurylase - luciferase - and apyrase. Adenosine 5' phosphosulfate (APS) and luciferin are added.
Oligo(dT) affinity chromatography
Pyrosequencing Step 1
Pyrosequencing Step 2
Clone
5. During meiosis - homologous recombination happens in chromosomes to generate offspring diversity. Recombination is used to repair DNA damage and can be induced by a wide array of environmental stresses.
Touchdown PCR
Homologous Recombination
Avian myelobastosis virus (AMV) reverse transcriptase
Automated DNA sequencing
6. DNA sequencing - Understand biological processes - Study the function of encoded protein - Introduce a mutation into the gene - Evolve a protein towards desirable functions - Obtain large amounts of a protein
Recognition sites of restriction endonucleases
Why clone genes
Rules for primer
Pyrosequencing Step 4
7. Fluorescent dye is attached to 3' of each of the four bases (ddNTP) and will emit a narrow spectrum of light when struck by an argon ion laser beam. All four ddNTP can be added to the same reaction. >800 bases can be sequenced
cDNA library
Problems with Sanger method
Automated DNA sequencing
Oligo(dT) affinity chromatography
8. A DNA which is complementary to an RNA (a complementary DNA); Generally made by reverse transcription of mRNA. (1) purification of mRNA with polyT because mRNA has lots of polyA on 3' end - (2) first strand DNA synthesis using RTase - (3) second stra
Bacteriophage Lambda
cDNA library
Transduction
Transforming and Maintaining Plasmid
9. Each clone on the plate has the gene of interest - but there are only a few colonies that have the gene. Once do a filter paper - you need to do it again around the area where colonies popped up first until finally know where the colony is.
Problems with Sanger method
Edman degradation
Colony hybridization
Replication of plasmids
10. ATP sulfurylase quantitatively converts PPi to ATP in the presence of APS. This ATP drives the luciferase mediated conversion of luciferin to oxyluciferin that generates visible light in amounts that are porportional to the amount of ATP and is detec
Check PCR Product
cDNA library
Cloning Vector
Pyrosequencing Step 3
11. Need primers - dNTP - template - thermostable polymerase - buffer - primer overhangs introduce nonnative sequences - primer mismatches introduce mutations - stops because taqP denatures after awhile
Shotgun sequencing
Check PCR Product
PCR
Transduction
12. Cell lysis --> new phages. In nonrestrictive bacteria - there is more chance lysis. Plaques appear where cells have lysed.
Molecular cloning
Chromosome walking
Markers
Lytic
13. Need: polymerase - dNTP (one is labeled with 32P to provide signal) - ddNTP (3'H will terminate DNA synthesis; dideoxyribose; only one is put in and added in excess) - synthesizes DNA and can deduce sequence wherever DNA stops synthesizing because o
Ct = 38-40 (Cycle threshold)
Lytic
Single Recombination
Sanger method
14. Four Components: 1. Template (Target DNA) - doesn't need to be purified and can be from anything 2. Primers (short oligonucleotides) 3. dNTP (building blocks) 4. Thermostable polymerase - no need for RNA primers like in actual DNA replication
Transduction
Rules for primer
Polymerase Chain Reaction
Transforming and Maintaining Plasmid
15. dNTP is added to the reaction Each time dNTP is incorporated to DNA - pyrophosphate (PPi) is released in a quantity equimolar to the amount of incorporated nucleotide.
Transgenic genes
Pyrosequencing Step 4
Isolation of Plasmid DNA from e. coli
Pyrosequencing Step 2
16. Increases specificity - sensitivity - and yield without redesigning primers. The initial annealing temperature is above the projected melting temperature of the primers being used. It then transitions to lower - more permissive annealing temperature
Lysogenic
Restriction Digest
Probe...
Touchdown PCR
17. 1. Detecting pathogens using genome- specific primer pairs 2. Screening specific genes for unknown mutations 3. Genotyping using known STS (sequence tagged sites) markers
Polymerase Chain Reaction
Applications of PCR
Ct < 29 (Cycle threshold)
Ct = 30-37 (Cycle threshold)
18. The first reverse transcriptase specifically purified for use in first stand cDNA reactions
Avian myelobastosis virus (AMV) reverse transcriptase
Ct = 38-40 (Cycle threshold)
Restriction Digest
Pyrosequencing Step 5
19. The host's immune system that protects against foreign DNA (DNA binding proteins). It protects the hosts DNA through methylation and digests DNA that isn't methylated. Hydrolyze phosophodiester bond at specific sequences. Binding/cutting sites can be
PCR
Pfu Polymerase
Oligo(dT) affinity chromatography
Restriction endonucleases
20. Can be used to linearize circular DNA - can have double digest - usually done at 37C but some done at 55C - digest time depends on the amount of enzyme
Restriction Digest
Taq polymerase
Sanger method
Plasmids
21. From bacteriophage lambda and help in the removal of chromosomal genes in e.coli. As little as 30 nt homologous region is required - which can be introduced as overhangs in a PCR reaction using the selection marker as template 1. Gam - protects line
Transduction
Red recombinase enzymes
T4 DNA Polymerase
Toolset for cloning
22. (1) Gene is separated from chromosome - (2) gene is put into a vector - (3) vector replicates to produce multiple copies of the gene.
PCR
Recombination enzymes
Homologous Recombination
Molecular cloning
23. Introduced on plasmids sensitive to temperature
FLP Recombinase System (Flippase)
Chromosome walking
Polymerase Chain Reaction
Red recombinase and FLP recombinase
24. A host for recombinant DNA because it can grow fast and to a high cell density. It can also transcribe most foreign genes efficiently and there are many strains that facilitate genetic manipulations.
E. coli
Autoradiogram
Primer
Ct = 30-37 (Cycle threshold)
25. Small size (between 3-50 kb) and it is more efficient to transfer into host cell. Unique restriction enzyme sites and selectable marker (antibiotic resistance genes)
Markers
Features of cloning vector
Ct = 30-37 (Cycle threshold)
Pyrosequencing Step 5
26. 1. Primer length is between 18-24 nucleotides long. 2. Duplex stability: both primers need to have similar Tm to have the same hybridization kinetics during the template annealing phase. Remove bases to have the same Tm 3. Non - complementary primer
Key Features of PCR
Chromosome walking
Pfu Polymerase
Rules for primer
27. The number of cycles required for the fluorescent signal to pass the threshold (background level). This is inversely proportional to the amount of target nucleic acid.
Restriction endonucleases
Cycle threshold
Restriction Digest
Automated DNA sequencing
28. 1. Use RTase to go from RNA to DNA 2. Use RNAseH to get rid of RNA 3. Use TaqP to make top strand of DNA - can't detect quantity of RNA/DNA
Pyrosequencing Step 1
Reverse Transcription PCR
Uses of Homologous recombination
Shotgun sequencing
29. 1. Decide the desired coverage of the genome 2. Choose an appropriate vector for making the library 3. Digest the genome pieces and clone into the vector 4. Introduce the library into e.coli host using appropriate means 5. Design probes to investiga
Steps to Finding desired gene
Taq polymerase
Edman degradation
Bacteriophage Lambda
30. 20-25 nt oligonucleotide that will hybridize to DNA of interest. It can be radiolabeled with kinase and 32P-ATP or fluorescently labeled.
Shotgun sequencing
Recognition sites of restriction endonucleases
cDNA library
Probe...
31. Used so the cell isn't killed and can still transfer foreign DNA into a host cell. The DNA can be propagated in a host cell and hosts with the vector can be selected over hosts that don't have the vector. Plasmids - viruses - plasmids + viruses (cosm
Red recombinase enzymes
Cloning Vector
Transduction
Transform
32. 4-8 bp long (usually 6). Mostly palindromic because the nuclease is 2 enzymes coming together. There are 3 types of cleavage: (1) blunt ends - (2) 5' overhang sticky end - (3) 3' overhang sticky end.
Markers
Oligo(dT) affinity chromatography
Recognition sites of restriction endonucleases
Transforming and Maintaining Plasmid
33. Assist recombination between homologous DNA sequences.
Recombination enzymes
Rules for primer
Quantitative Real-Time PCR
Pyrosequencing Step 4
34. Move plasmid into cell. In cancer biology - this means converting non - carcinoma cell to carcinoma cell.
Key Features of PCR
Transform
Lytic
Reverse Transcription PCR
35. Has been cloned and re- engineered to have negligible levels of RNase H activity - without compromising its first strand cDNA polymerizing function
Applications of PCR
Homologous Recombination
Pyrosequencing Step 4
Moloney murine leukemia virus (MMLV) RTase
36. Two components to perform the traceless recombination on chromosomes: 1. FLP recognition target (FRT): inverted repeat 2. FLP recombinase
Lytic
Transforming and Maintaining Plasmid
FLP Recombinase System (Flippase)
Red recombinase and FLP recombinase
37. 3' to 5' exonuclease - more expensive - yields less product - but has less error than TaqP
Clone
Steps to Finding desired gene
Taq polymerase
Pfu Polymerase
38. Plasmids have an ori sequence for replication. The sequence of ori and plasmid encoded proteins determine the 'copy- number' of plasmids. Stringent control of replication (1 copy per cell division - low cell copy number plasmid); relaxed control of r
Transform
Isolation of Plasmid DNA from e. coli
Replication of plasmids
Restriction endonucleases
39. DNA footprinting; will have an empty region if DNA has protein binding to it because that region won't be amplified.
Replication of plasmids
Restriction endonucleases
Autoradiogram
Clone
40. Weak reactions with minimal nucleic acid (representing an infection state or environmental contamination).
Ct = 38-40 (Cycle threshold)
Ct < 29 (Cycle threshold)
Primer
Problems with Sanger method
41. A DNA Virus that infects bacteria with its chromosomal DNA. The Phage DNA is linear (35-50 kb) but circularizes in host. It encodes virus specific enzymes and is replicated in the host. It gets integrated into bacteria genome.
Single Recombination
Lysogenic
Clone
Bacteriophage Lambda
42. May get a smear - can't tell the difference between bp - and limited by # of sequence it can generate because primers may only be able to do 1000 bp
T4 DNA Polymerase
Molecular cloning
Problems with Sanger method
Transforming and Maintaining Plasmid
43. Each cell can maintain different plasmids with different selection markers. If the plasmid has the same selection marker - one will be lost. Transformation is very inefficient (<1% of the cell can be transformed).
Primer
Autoradiogram
Pyrosequencing Step 1
Transforming and Maintaining Plasmid
44. 1. Delete genetic information on the chromosomes of species of interest (knock outs) 2. Insert new genes and DNA sequences into desired positions on the chromosome (not relying on plasmids) 3. Generate genetically engineered species
Uses of Homologous recombination
Touchdown PCR
Moloney murine leukemia virus (MMLV) RTase
Red recombinase enzymes
45. 1. Construct a genome library: YAC - cosmids - etc 2. If using large insert vectors - clone smaller fragments (40 kb) into overlapping cosmids 3. Fragment the cosmid into 1 kb pieces using sonication and ligate into small plasmids 4. Sequence the 1 k
Restriction endonucleases
3 Types of Restriction Endonuclease
Primer
Shotgun sequencing
46. SDS lysis cells - potassium acetate/acetic acid is used to neutralize pH and precipitates lipids and large proteins - centrifuge to separate out plasmid DNA from precipitates
Colony hybridization
Moloney murine leukemia virus (MMLV) RTase
Clone
Isolation of Plasmid DNA from e. coli
47. A viral polymerase that converts sticky ends to blunt ends. Has polymerase activity and nuclease activity.
Lytic
T4 DNA Polymerase
Cloning examples
Why clone genes
48. Use polyT to 'trap' the mRNA and leave tRNA and rRNA behind.
Transform
Taq polymerase
Oligo(dT) affinity chromatography
Quantitative Real-Time PCR
49. Strong positive reaction with moderate nucleic acid
Ct = 30-37 (Cycle threshold)
Uses of Homologous recombination
Sanger method
Primer
50. Primers anneal to complementary sequences on DNA template and determine the boundaries of the amplified product.
Chromosome walking
Rules for primer
Taq polymerase
Primer