Which option best describes the correct order and correct protein function in converting a silenced gene into one that is actively transcribed? Note; the events are listed in sequence from beginning to end and not every step is listed. Co-repressor recruitment to enhancer; DNA opening; General TFs binding to promoter; Mediator complex assembly Co-activator recruitment to enhancer; General TFs binding to promoter; DNA opening; DNA looping Co-activator recruitment to enhancer; DNA opening; General TFs binding to promoter; DNA looping DNA opening; Co-activator recruitment to enhancer; General TFs binding to promoter; Mediator complex assembly DNA opening; Mediator complex assembly, Basal transcription complex assembly; DNA looping

Biology (MindTap Course List)
11th Edition
ISBN:9781337392938
Author:Eldra Solomon, Charles Martin, Diana W. Martin, Linda R. Berg
Publisher:Eldra Solomon, Charles Martin, Diana W. Martin, Linda R. Berg
Chapter14: Gene Regulation
Section: Chapter Questions
Problem 8TYU: Through alternative splicing, eukaryotes (a) reinforce gene inactivation (b) prevent transcription...
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Which option best describes the correct order and correct protein function in
converting a silenced gene into one that is actively transcribed? Note; the
events are listed in sequence from beginning to end and not every step is
listed.
Co-repressor recruitment to enhancer; DNA opening; General TFs binding to
promoter; Mediator complex assembly
Co-activator recruitment to enhancer; General TFs binding to promoter; DNA
opening; DNA looping
Co-activator recruitment to enhancer; DNA opening; General TFs binding to
promoter; DNA looping
DNA opening; Co-activator recruitment to enhancer; General TFs binding to
promoter; Mediator complex assembly
DNA opening; Mediator complex assembly, Basal transcription complex assembly;
DNA looping
Transcribed Image Text:Which option best describes the correct order and correct protein function in converting a silenced gene into one that is actively transcribed? Note; the events are listed in sequence from beginning to end and not every step is listed. Co-repressor recruitment to enhancer; DNA opening; General TFs binding to promoter; Mediator complex assembly Co-activator recruitment to enhancer; General TFs binding to promoter; DNA opening; DNA looping Co-activator recruitment to enhancer; DNA opening; General TFs binding to promoter; DNA looping DNA opening; Co-activator recruitment to enhancer; General TFs binding to promoter; Mediator complex assembly DNA opening; Mediator complex assembly, Basal transcription complex assembly; DNA looping
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