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The maternal X chromosome impairs cognition and accelerates brain aging through epigenetic modulation in female mice

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NIAID Data Ecosystem2026-05-02 收录
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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE200461
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To compare gene expression between the materal X (Xm) and paternal X (Xp), we used a flurorescence-based cell sorting to separate the maternal X from the paternal X. Then we performed gene expression analysis using data obtained from RNA-seq of young Xm and Xp cells To compare gene expression between the materal X (Xm) and paternal X (Xp) in neurons from both young and old mice, we used a flurorescence-based cell sorting to separate the maternal X from the paternal X. Then we performed gene expression analysis using data obtained from RNA-seq of young and old Xm and Xp neurons. Comparative gene expression profiling analysis for young Xm and Xp cells. Each experimental group has 5 biological replicates Comparative gene expression profiling analysis for young and old Xm and Xp cells. Each experimental group has 5 biological replicates
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2025-02-05
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