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10.1038/nature17644

http://scihub22266oqcxt.onion/10.1038/nature17644
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C4844022!4844022!27049946
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suck abstract from ncbi


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pmid27049946      Nature 2016 ; 532 (7598): 201-6
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  • Modulation of tissue repair by regeneration enhancer elements #MMPMID27049946
  • Kang J; Hu J; Karra R; Dickson AL; Tornini VA; Nachtrab G; Gemberling M; Goldman JA; Black BL; Poss KD
  • Nature 2016[Apr]; 532 (7598): 201-6 PMID27049946show ga
  • How tissue regeneration programs are triggered by injury has received limited research attention. Here, we investigated the existence of enhancer regulatory elements that engage in regenerating tissue. Transcriptome analyses revealed that leptin b (lepb) is sharply induced in regenerating hearts and fins of zebrafish. Epigenetic profiling identified a short DNA sequence element upstream and distal to lepb that acquires open chromatin marks during regeneration and enables injury-dependent expression from minimal promoters. This element could activate expression in injured neonatal mouse tissues and was divisible into tissue-specific modules sufficient for expression in regenerating zebrafish fins or hearts. Simple enhancer-effector transgenes employing lepb-linked sequences upstream of pro- or anti-regenerative factors controlled the efficacy of regeneration in zebrafish. Our findings provide evidence for tissue regeneration enhancer elements (TREEs) that trigger gene expression in injury sites and can be engineered to modulate the regenerative potential of vertebrate organs.
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