Palmisano Ilaria, Liu Tong, Gao Wei, Zhou Luming, Merkenschlager Matthias, Müller Franziska, Chadwick Jessica, Rivolta Rebecca Toscano, Kong Guiping, King James Wd, Al-Jibury Ediem, Yan Yuyang, Carlino Alessandro, Collison Bryce, De Vitis Eleonora, Gongala Sree, De Virgiliis Francesco, Wang Zheng, Di Giovanni Simone
Department of Medicine, Division of Brain Sciences, Centre for Restorative Neuroscience, Imperial College London, London, W12 0NN, UK.
Department of Neuroscience, The Ohio State University, Columbus, 43210, OH, USA.
bioRxiv. 2024 Jun 9:2024.06.09.597974. doi: 10.1101/2024.06.09.597974.
The in vivo three-dimensional genomic architecture of adult mature neurons at homeostasis and after medically relevant perturbations such as axonal injury remains elusive. Here we address this knowledge gap by mapping the three-dimensional chromatin architecture and gene expression programme at homeostasis and after sciatic nerve injury in wild-type and cohesin-deficient mouse sensory dorsal root ganglia neurons via combinatorial Hi-C and RNA-seq. We find that cohesin is required for the full induction of the regenerative transcriptional program, by organising 3D genomic domains required for the activation of regenerative genes. Importantly, loss of cohesin results in disruption of chromatin architecture at regenerative genes and severely impaired nerve regeneration. Together, these data provide an original three-dimensional chromatin map of adult sensory neurons in vivo and demonstrate a role for cohesin-dependent chromatin interactions in neuronal regeneration.
在稳态下以及遭受诸如轴突损伤等医学相关扰动后,成年成熟神经元的体内三维基因组结构仍然难以捉摸。在这里,我们通过组合式高通量染色体构象捕获(Hi-C)和RNA测序,绘制野生型和黏连蛋白缺陷型小鼠感觉背根神经节神经元在稳态下以及坐骨神经损伤后的三维染色质结构和基因表达程序,以填补这一知识空白。我们发现,黏连蛋白通过组织激活再生基因所需的三维基因组结构域,对再生转录程序的完全诱导是必需的。重要的是,黏连蛋白的缺失导致再生基因处的染色质结构破坏,并严重损害神经再生。这些数据共同提供了成年感觉神经元在体内的原始三维染色质图谱,并证明了黏连蛋白依赖性染色质相互作用在神经元再生中的作用。