Remyelination failure in diseases like multiple sclerosis (MS) was thought to involve suppressed maturation of oligodendrocyte precursors; however, oligodendrocytes are present in MS lesions yet lack myelin production. We found that oligodendrocytes in the lesions are epigenetically silenced. Developing a transgenic reporter labeling differentiated oligodendrocytes for phenotypic screening, we identified a small-molecule epigenetic-silencing-inhibitor (ESI1) that enhances myelin production and ensheathment. ESI1 promotes remyelination in animal models of demyelination and enables de novo myelinogenesis on regenerated CNS axons. ESI1 treatment lengthened myelin sheaths in human iPSC-derived organoids and augmented (re)myelination in aged mice while reversing age-related cognitive decline. Multi-omics revealed that ESI1 induces an active chromatin landscape that activates myelinogenic pathways and reprograms metabolism. Notably, ESI1 triggered nuclear condensate formation of master lipid-metabolic regulators SREBP1/2, concentrating transcriptional co-activators to drive lipid/cholesterol biosynthesis. Our study highlights the potential of targeting epigenetic silencing to enable CNS myelin regeneration in demyelinating diseases and aging.
Small-molecule-induced epigenetic rejuvenation promotes SREBP condensation and overcomes barriers to CNS myelin regeneration.
小分子诱导的表观遗传再生促进 SREBP 凝聚,克服中枢神经系统髓鞘再生的障碍
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作者:Liu Xuezhao, Xin Dazhuan Eric, Zhong Xiaowen, Zhao Chuntao, Li Zhidan, Zhang Liguo, Dourson Adam J, Lee Lindsay, Mishra Shreya, Bayat Arman E, Nicholson Eva, Seibel William L, Yan Bingfang, Mason Joel, Turner Bradley J, Gonsalvez David G, Ong William, Chew Sing Yian, Ghosh Balaram, Yoon Sung Ok, Xin Mei, He Zhigang, Tchieu Jason, Wegner Michael, Nave Klaus-Armin, Franklin Robin J M, Dutta Ranjan, Trapp Bruce D, Hu Ming, Smith Matthew A, Jankowski Michael P, Barton Samantha K, He Xuelian, Lu Q Richard
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2024 | 起止号: | 2024 May 9; 187(10):2465-2484 |
| doi: | 10.1016/j.cell.2024.04.005 | 研究方向: | 神经科学、表观遗传 |
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