作者
Kiran Girdhar, Gabriel E Hoffman, Jaroslav Bendl, Samir Rahman, Pengfei Dong, Will Liao, Leanne Brown, Olivia Devillers, Bibi S Kassim, Jennifer R Wiseman, Royce Park, Elizabeth Zharovsky, Rivky Jacobov, Elie Flatow, Alexey Kozlenkov, Thomas Gilgenast, Jessica S Johnson, Lizette Couto, Mette A Peters, Jennifer E Phillips-Cremins, Chang-Gyu Hahn, Raquel E Gur, Carol A Tamminga, David A Lewis, Vahram Haroutunian, Psychencode Consortium, Stella Dracheva, Barbara K Lipska, Stefano Marenco, Marija Kundakovic, John F Fullard, Yan Jiang, Panos Roussos, Schahram Akbarian
发表日期
2021/6/2
期刊
bioRxiv
页码范围
2021.06. 02.446728
出版商
Cold Spring Harbor Laboratory
简介
To explore modular organization of chromosomes in schizophrenia (SCZ) and bipolar disorder (BD), we applied ‘population-scale’ correlational structuring of 739 histone H3-lysine 27 acetylation and H3-lysine 4 trimethylation profiles, generated from the prefrontal cortex (PFC) of 568 cases and controls. Neuronal histone acetylomes and methylomes assembled as thousands of cis-regulatory domains (CRDs), revealing fine-grained, kilo-to megabase scale chromatin organization at higher resolution but firmly integrated into Hi-C chromosomal conformations. Large clusters of domains that were hyperacetylated in disease shared spatial positioning within the nucleus, predominantly regulating PFC projection neuron function and excitatory neurotransmission. Hypoacetylated domains were linked to inhibitory interneuron- and myelination-relevant genes. Chromosomal modular architecture is affected in SCZ and BD, with hyperacetylated domains showing unexpectedly strong convergences defined by cell type, nuclear topography, genetic risk, and active chromatin state across a wide developmental window.
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