Trans-acting regulators of gene expression include? (Select all that apply) Question 6 options: Introns Activators UAS Promoters Start codons Enhancers Histone deacetylases Silencers The TATA box Insulator sequences
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Trans-acting regulators of gene expression include? (Select all that apply)
Question 6 options:
|
Introns |
|
Activators |
|
UAS |
|
Promoters |
|
Start codons |
|
Enhancers |
|
Histone deacetylases |
|
Silencers |
|
The TATA box |
|
Insulator sequences |
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- Which of these plays a role in the regulation of transcription in both prokaryotic and eukaryotic cells? Question 5 options: attachment of RNA polymerase to the promoter transcription factors RNA splicing gene operonsa QUESTION 7 Please read the paragraph regarding transcription termination and fill in the blanks with words from the word bank below (not all of the words will be used): Rat1 ATP Adenosine AAUAAA Rho TATA A-site RNA polymerase Uracil Rut site Guanosine Hairpin There are two known mechanisms of transcription termination in prokaryotes. One mechanism requires a protein complex called This protein complex binds to the which is located on the RNA that is being transcribed. This protein complex then moves toward the stalled RNA polymerase complex and unwinds the RNA from the DNA. A second mechanism for termination in prokaryotes requires an RNA termination sequence that contains a secondary structure called a followed by a string of nucleotides. Transcription termination for RNA Polymerase II in eukaryotes happens when the termination consensus sequence, is transcribed leading to cleavage of the mRNA 11-30 nucleotides downstream of the termination sequence. Once cleavage occurs, binds to…Transcription factors bind to: Question 20 options: DNA regions called cis-acting elements RNA regions called trans-acting factors DNA regions called trans-acting elements RNA regions called trans-acting elements RNA regions called cis-acting elements
- New drugs are being developed that decrease DNA methylation and prevent the removal of acetyl groups from histone proteins. Explain how these drugs could affect gene expression to help kill tumor cells.Bong Question #1: The diagram below depicts the regulatory regions for two (made-up) genes, which contain cis-regulatory sequences X, Y, and Z and bind to transcriptional regulatory proteins: zelo led diogot bolgate SMARTY – a transcriptional ACTIVATOR protein, which is present in all neuronal cells and binds to cis-regulatory sequence, X1oq & vino 19vewod.152 moldong sai mut tum BRAWNY-a transcriptional ACTIVATOR protein, which is present in all muscle cells and binds to cis-resgulatory sequence, Yolgulum di ko malo na SNARKY - a transcriptional REPRESSOR protein, which is present in peripheral neurons only and binds to cis-regulatory sequence Z 100 bio se i da se lotimo broup gniwollt od 19 bolgate ons zegg or we de base do no me to stir noitesup od went of sistemos seu anoitesup 15wens horle 10oldog woy ni gnius stoted 1910 ni tatayot ovizasovo got no rade od lliw anioq azia oo ingene Aroom or b X y Jeol VELY gan 100 Tonnodige ΤΑΤΑ, 229nibrow dong H .aodto diw atse meldong mov.no o…Which of the follow general transcription factors contains the protein TBP and binds to TATA box promoters first? Group of answer choices TFIID TFIIB TFIIA TFIIF
- Which of these epigenetic changes could lead to reduced transcription of a particular gene? Please make sure to select all correct answer options. decreasing acetylation of histones associated with the nucleosomes of that gene inducing histone modifications that allow the formation of denser nucleosomes in the regulatory region of the gene Oincreasing acetylation of histones associated with the nucleosomes of that gene repositioning the nucleosomes associated to the gene to expose the enhancer and promoter DNA of the gene Uremoving histones to expose the enhancer and promoter DNA of the geneWhich of the following applies best to post-translational control? Question 13 options: regulation of gene expression after transcription regulation of gene expression after translation control of epigenetic activation period between transcription and translationThis question is regarding the 6 areas that can be involved in the control of gene expression: Part 1 - Using the image below, indicate where the six major control points for eukaryotic gene expression are on the figure (Letters A - F). Part 2 - Please give a brief description of what is occurring at each point or the specific molecule(s) for letters A- F. 1. Control Point A 2. Description of A 3. Control Point B 4. Description of B 5. Control Point C 6. Description of C 7. Control Point D 8. Description of D 9. Control Point E 10. Description of E 11. Control Point F 12. Description of F
- You are teaching a class on the regulation of eukaryotic gene expression. such as the promoter regions, where the RNA polymerase II and transcription factors would bind THERE ARE MULTIPLE ANSWERS THAT YOU CAN CHOOSE From the list given - choose all components that you think are part of a typical eukaryotic gene Group of answer choices A core promoter B 3'UTR C introns D enhancer E coding sequence F mediator protein G PPE H exons I DNA-bending protein J 5'UTRWhich of the following is intervening sequence? Question 7 options: The sequence that precedes the transcription initiation site The sequence that bind to transcription factors The sequence that encode amino acids in eukaryotic organisms The sequence that eukaryotic genes contain and are missing from mature mRNAFrom the list given - choose all of the regulatory proteins that would bind the eukaryotic gene to control its expression THERE ARE MULTIPLE ANSWER TO THE QUESTION Group of answer choices A RNA polymerase II B 3' UTR C mediator protein D 5' UTR E activators F coding sequence G specific transcription factors H general transcription factors