What is the function of the enzyme DNA polymerase? To build a polypeptide using mRNA as a template To build a strand of DNA using DNA as a template To build a strand of DNA using a polypeptide as a template To build a strand of mRNA using DNA as a template
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What is the function of the enzyme DNA polymerase?
To build a polypeptide using mRNA as a template
To build a strand of DNA using DNA as a template
To build a strand of DNA using a polypeptide as a template
To build a strand of mRNA using DNA as a template
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- What is the function of DNA polymerase? a. It degrades DNA in cells. b. It adds RNA nucleotides to a new strand. c. It coils DNA around histones to form chromosomes. d. It adds DNA nucleotides to a replicating strand. e. None of these.During DNA replication, DNA polymerase adds nucleotides to the: 3' end of the newly synthesized strand as it moves toward the 3' end of the template strand 3' end of the newly synthesized strand as it moves toward the 5'end of the template strand 5' end of the newly synthesized strand as it moves toward the 5' end of the template strand 5' end of the newly synthesized strand as it moves toward the 3' end of the template strand none of the above 0 0 0 0 0The tuble below shows part of the process of DNA replication Origin al ONA Strand Complementary DNA Strand A-C-C-G-T-A-C T-G-G-A A-T-G What is the most likely effect this could have on genetic information going forward? O There willl be no change in the genetic information that gets transmitted because the complementary strand will never be used as a template O There will not be a change in the genetic information that gets transmitted because the cells having the new section of DNA will cored any mutations O There will be a change in the genetic information that gets transmitted due to the complementary strand being used as a template in fulure DNA replication. OThere will be a change in the genetic information that gets transmitted because the sections of DNA with mistakes will be passed on to make future generalions songer
- Match the proteins with their function in DNA replication. unwinds DNA at replication fork forms covalent phosphodiester bonds to join DNA fragments remove primer and replace the RNA with DNA, also has 3'-> 5'exonuclease activity for proofreading synthesizes DNA by adding to the 3' end of the growing strand of DNA adds RNA primer uses an RNA template to facilitate extension of the telomeres in eukaryotes introduces a double-stranded break ahead of the replication fork and swivels the cleaved ends around the central axis to relieve the stress of helix unwinding helicase [Choose ] ✓ helicase telomerase DNA polymerase II DNA polymerase I DNA polymerase III DNA primase DNA ligase D DNA Gyrase (topoiso- merase) exonucleaseThe following is the base sequence on the coding strand of a DNA molecule. AAT GCC AGT GGT TCG CAC Rewrite the base sequence above and underneath write the base sequence for the template DNA strand. Write the base sequence for the strand of mRNA transcribed from the original strand of DNA or template strand. Remember transcribing means making mRNA from DNA. Write the amino acid sequence translated from this mRNA. Translating means making an amino acid chain from mRNA. A) If the fourth nucleotide in the coding DNA strand was changed from a G to a C, what would be the base sequence of the new strand of mRNA? b) What would the resulting amino acid fragment be? A) If a G were added to the coding DNA strand after the third nucleotide, what would be the base sequence of the resulting mRNA? B) What would the resulting amino acid fragment be?What is the role of DNA polymerase in DNA replication? O A. DNA polymerase replicates tRNA, mRNA and rRNA B. DNA polymerase adds A-U-G-C as compliments to the original DNA strand to make an identical copy. O C. DNA polymerase "unzips" the DNA D. DNA polymerase adds complimentary free nucleotides to the original strand to make and identical copy. Submit Clear form Never submit passwords through Google Forms. This form was created inside of East Baton Rouge Parish Schools. Report Abuse Google Forms
- Match the proteins with their function in DNA replication. unwinds DNA at replication fork forms covalent phosphodiester bonds to join DNA fragments remove primer and replace the RNA with DNA, also has 3'-> 5'exonuclease activity for proofreading synthesizes DNA by adding to the 3' end of the growing strand of DNA adds RNA primer uses an RNA template to facilitate extension of the telomeres in eukaryotes helicase DNA ligase DNA polymerase II introduces a double-stranded break ahead of the replication fork and swivels the cleaved ends around the central axis to relieve the stress of helix unwinding DNA polymerase III DNA primase telomerase DNA Gyrase (topoisomerase)The function of DNA polymerase I is to? Add nucleotides to the 3' end of the primer Add nucleotides to the 5' end of the primer Add nucleotides at the location of the primer after it is removed Add nucleotides on the template strand with the help of ribosomes Add nucleotides on mRNAGive the mRNA and the polypeptide (amino acid sequence) that results from the following DNA template strand: DNA template T A C A C G G G C G T A
- Below is a list of functions related to protein synthesis. Place the number for the function in the blank above its corresponding structure. 1. Copies the genetic code from DNA and carries it to the ribosomes 2. Splits DNA into two strands and transcribes MRNA from the antisense strand 3. Carries amino acids to the ribosome 4. Area on DNA antisense strand that RNA polymerase binds to begin transcription Promoter MRNA RNA TRNA region polymeraseWhat type of enzyme would you need to insert a functional gene in a particular part of the genome? A nuclease that makes staggered cuts A polymerase that recognizes particular DNA sequences A nuclease that makes blunt cuts ⒸA polymerase that can copy the required sequenceDNA Template: AAC CGA TCC TAT CGG AAA TTT TGC ATG ATC TAT Give the nucleotide sequence after DNA replication, give the mRNA nucleotide sequence, & give the amino acids translated from the mRNA molecule. What is the stop codon in the sequence?