And Well Elaborated Answers.
What is the most important difference between DNA polymerases and RNA polymerases? (NOT "DNA vs
RNA") - correct answers DNA requires a primer while RNA does not
RNA polymerases can begin transcription anywhere. How does the cell determine where transcription
should start? - correct answers Wherever the promoter region is where transcription starts
In prokaryotes, the site of transcription initiation is determined by
A. the position of an RNA primer.
B. the position of a DNA primer.
C. binding of TATA-Binding Protein to a TATA box.
D. binding of RNA Polymerase + Sigma factor to the -10 and -35 consensus sequences. - correct answers
D. binding of RNA Polymerase + Sigma factor to the -10 and -35 consensus sequences.
In Eukaryotes, the site of transcription initiation is determined by :
A. the position of an RNA primer.
B. the position of a DNA primer.
C. binding of TATA-Binding Protein to a TATA box.
D. binding of RNA Polymerase + Sigma factor to the -10 and -35 consensus sequences - correct answers
C. Binding of TATA-Binding Protein to a TATA box
In Prokaryotes, transcription starts:
A. at the TATA box.
B. 10 bases "downstream" of the -10 site.
C. at the -35 site.
D. at the -10 site - correct answers B. 10 bases "downstream" of the -10 site
, Prokaryote promoter: - correct answers Tells RNA polymerase where to bind and specifies START SITE,
Direction of Transcription, Template Strand
In transcription, do you need AUG to start? - correct answers No, that is only for translation
In prokaryotes, the start of transcription is determined by
A. A specific start DNA sequence; the holoenzyme binds to whatever DNA is 10 and 35 bases "upstream"
from the transcription start site.
B. Where the holoenzyme is bound to DNA; the holoenzyme only binds to the specific consensus
sequences we call -10 and -35 sites - correct answers B. Where the holoenzyme is bound to DNA
What does the TATA box do? - correct answers Initiates transcription by being a binding site for
transcription factors
In a eukaryotic Pol-II promoter, the TATA box is important because
A. It unwinds the double helix to allow one strand to be transcribed.
B. It is the DNA sequence that is recognized and bound by the TATA-binding protein.
C. It is always single-stranded and therefore accessible to TATA-binding protein.
D. It is a short RNA that acts as a primer for transcription - correct answers B. It is the DNA sequence that
is recognized and bound by the TATA-binding protein
What binds to the core promoter? - correct answers GTFs to help position RNA polymerase 2
What binds to the regulatory promoter? - correct answers STFs like enhancers and repressors
What do enhancers, regulatory promoter and core promoters have in common? - correct answers All
contain specific DNA sequences that serve as binding sites
A transcription bubble is
A. a region of dissociated DNA duplex maintained by RNA polymerase in both prokaryotes and
eukaryotes.