Recent observations lead to the idea that genes, not in the same operon but spatially close, are highly co-transcribed, even in the absence of regulatory factors at their promoter regions.
Recent observations lead to the idea that genes, not in the same operon but spatially close, are highly co-transcribed, even in the absence of regulatory factors at their promoter regions.
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The iGEM Paris-Saclay project aims to study the effects of DNA topology on gene expression in ''E. coli'' by answering to this question: '''<span class="purple">Does bringing a strong promoter closer to a weak promoter influence the expression level of genes located downstream?</span>'''
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The iGEM Paris-Saclay project aims to study the effects of DNA topology on gene expression in ''E. coli'' by answering to this question: '''<span class="highlight">Does bringing a strong promoter closer to a weak promoter influence the expression level of genes located downstream?</span>'''
We have designed a new tool based on CRISPR/Cas9 system to bring two specific DNA regions closer. This system is composed of two different dCas9s fused with each part of FRB / FKBP12 dimerization system. Each dCas9 will target a specific DNA sequence, one on the chromosome and one on a plasmid, whereas dimerization system will promote the joining of the two dCas9s when rapalog is added.
We have designed a new tool based on CRISPR/Cas9 system to bring two specific DNA regions closer. This system is composed of two different dCas9s fused with each part of FRB / FKBP12 dimerization system. Each dCas9 will target a specific DNA sequence, one on the chromosome and one on a plasmid, whereas dimerization system will promote the joining of the two dCas9s when rapalog is added.