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10.1126/science.aag2445

http://scihub22266oqcxt.onion/10.1126/science.aag2445
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C5438575!5438575!27708057
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suck abstract from ncbi


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pmid27708057      Science 2016 ; 354 (6313): 769-73
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  • Systematic mapping of functional enhancer-promoter connections with CRISPR interference #MMPMID27708057
  • Fulco CP; Munschauer M; Anyoha R; Munson G; Grossman SR; Perez EM; Kane M; Cleary B; Lander ES; Engreitz JM
  • Science 2016[Nov]; 354 (6313): 769-73 PMID27708057show ga
  • Gene expression in mammals is regulated by noncoding elements that can impact physiology and disease, yet the functions and target genes of most noncoding elements remain unknown. We present a high-throughput approach that uses CRISPR interference (CRISPRi) to discover regulatory elements and identify their target genes. We assess >1 megabase (Mb) of sequence in the vicinity of 2 essential transcription factors, MYC and GATA1, and identify 9 distal enhancers that control gene expression and cellular proliferation. Quantitative features of chromatin state and chromosome conformation distinguish the 7 enhancers that regulate MYC from other elements that do not, suggesting a strategy for predicting enhancer-promoter connectivity. This CRISPRi-based approach can be applied to dissect transcriptional networks and interpret the contributions of noncoding genetic variation to human disease.
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