Sustained Epigenetic Reactivation in Fragile X Neurons with an RNA-Binding Small Molecule

被引:0
|
作者
Kam, Christina W. [1 ]
Dumelie, Jason G. [1 ]
Ciceri, Gabriele [2 ,3 ]
Yang, Wang-Yong [4 ,5 ]
Disney, Matthew D. [5 ,6 ]
Studer, Lorenz [2 ,3 ]
Jaffrey, Samie R. [1 ]
机构
[1] Cornell Univ, Weill Med Coll, Dept Pharmacol, New York, NY 10065 USA
[2] Sloan Kettering Inst Canc Res, Ctr Stem Cell Biol, New York, NY 10065 USA
[3] Sloan Kettering Inst Canc Res, Dev Biol Program, New York, NY 10065 USA
[4] Univ Tennessee, Dept Chem & Phys, Chattanooga, TN 37403 USA
[5] Scripps Florida, Dept Chem, Scripps Res Inst, Jupiter, FL 33458 USA
[6] Herbert Wertheim UF Scripps Inst Biomed Innovat &, Dept Chem, Jupiter, FL 33458 USA
关键词
fragile X syndrome; RNA-binding small molecule; epigenetics; STEM-CELLS; FMR1; GENE; IDENTIFY COMPOUNDS; DROSOPHILA MODEL; MESSENGER-RNA; IN-VITRO; INHIBITION; EXPRESSION; MAP2; NEURODEGENERATION;
D O I
10.3390/genes16030278
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background/Objectives: Fragile X syndrome (FXS) is a disease of pathologic epigenetic silencing induced by RNA. In FXS, an expanded CGG repeat tract in the FMR1 gene induces epigenetic silencing during embryogenesis. FMR1 silencing can be reversed with 5-aza-deoxyctidine (5-aza-dC), a nonspecific epigenetic reactivator; however, continuous administration of 5-aza-dC is problematic due to its toxicity. We describe an approach to restore FMR1 expression in FXS neurons by transient treatment with 5-aza-dC, followed by treatment with 2HE-5NMe, which binds the CGG repeat expansion in the FMR1 mRNA and could block the resilencing of the FMR1 gene after withdrawal of 5-aza-dC. Methods: This study uses immunofluorescence and fluorescent in situ hybridization (FISH) to measure whether FMR1 expression is maintained in FXS post-mitotic neurons treated with 2HE-5NMe. Genome-wide profiling of histone marks was used to monitor epigenetic changes and drug selectivity in response to 5-aza-dC followed by 2HE-5NMe treatment. Changes to dendritic morphology were visualized using confocal microscopy. Results: In this study, we find that 2HE-5Nme maintains FMR1 in a reactivated state after reactivation using 5-aza-dC in post-mitotic neurons. FMR1 reactivation in neurons results in the re-expression of FMRP and reversal of FXS-associated dendritic spine defects. Conclusions: These results demonstrate that an RNA-binding small molecule can achieve gene-specific epigenetic control and provide an approach for the restoration of FMRP in FXS neurons.
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页数:19
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