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G9a-mediated histone methylation regulates ethanol-induced neurodegeneration in the neonatal mouse brain.

Neurobiol. Dis.. 2013; 
Subbanna Shivakumar,Shivakumar Madhu,Umapathy Nagavedi S,Saito Mariko,Mohan Panaiyur S,Kumar Asok,Nixon Ralph A,Verin Alexander D,Psychoyos Delphine,Basavarajappa Balap
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Peptide Synthesis Also, pre- incubation with blocking peptides for the anti-rabbit CC3, anti-mouse- cTau (GenScript, Piscataway, NJ, USA), anti-mouse H3K9me2 (Abcam, Cambridge, MA, USA), anti-rabbit G9a (Millipore, Billerica, MA, USA), anti-rabbit-H3K27me2 antibodies (Cell Signaling Technology, Danvers, MA, USA) completely blocked the immunostaining of these antibodies. Get A Quote

摘要

Rodent exposure to binge-like ethanol during postnatal day 7 (P7), which is comparable to the third trimester of human pregnancy, induces neuronal cell loss. However, the molecular mechanisms underlying these neuronal losses are still poorly understood. Here, we tested the possibility of histone methylation mediated by G9a (lysine dimethyltransferase) in regulating neuronal apoptosis in P7 mice exposed to ethanol. G9a protein expression, which is higher during embryogenesis and synaptogenic period compared to adult brain, is entirely confined to the cell nuclei in the developing brain. We found that ethanol treatment at P7, which induces apoptotic neurodegeneration in neonatal mice, enhanced G9a... More

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