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10.1038/nrn.2016.124

http://scihub22266oqcxt.onion/10.1038/nrn.2016.124
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C5503467!5503467 !27708356
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suck abstract from ncbi


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pmid27708356
      Nat+Rev+Neurosci 2016 ; 17 (11 ): 681-691
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  • Spatial genome organization and cognition #MMPMID27708356
  • Rajarajan P ; Gil SE ; Brennand KJ ; Akbarian S
  • Nat Rev Neurosci 2016[Nov]; 17 (11 ): 681-691 PMID27708356 show ga
  • Nonrandom chromosomal conformations, including promoter-enhancer loopings that bypass kilobases or megabases of linear genome, provide a crucial layer of transcriptional regulation and move vast amounts of non-coding sequence into the physical proximity of genes that are important for neurodevelopment, cognition and behaviour. Activity-regulated changes in the neuronal '3D genome' could govern transcriptional mechanisms associated with learning and plasticity, and loop-bound intergenic and intronic non-coding sequences have been implicated in psychiatric and adult-onset neurodegenerative disease. Recent studies have begun to clarify the roles of spatial genome organization in normal and abnormal cognition.
  • |Animals [MESH]
  • |Cognition/*physiology [MESH]
  • |DNA Methylation/*physiology [MESH]
  • |DNA-Binding Proteins/genetics/metabolism [MESH]
  • |Genome/*physiology [MESH]
  • |Humans [MESH]
  • |Neurodevelopmental Disorders/*genetics/metabolism/pathology [MESH]
  • |Neurons/pathology/physiology [MESH]


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