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One or more keywords matched the following properties of Lawrence, Jeanne
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keywords X-chromosome Inactivation
One or more keywords matched the following items that are connected to Lawrence, Jeanne
Item TypeName
Academic Article The X chromosome is organized into a gene-rich outer rim and an internal core containing silenced nongenic sequences.
Academic Article An ectopic human XIST gene can induce chromosome inactivation in postdifferentiation human HT-1080 cells.
Academic Article Translating dosage compensation to trisomy 21.
Academic Article Word frequency analysis reveals enrichment of dinucleotide repeats on the human X chromosome and [GATA]n in the X escape region.
Academic Article BRCA1 does not paint the inactive X to localize XIST RNA but may contribute to broad changes in cancer that impact XIST and Xi heterochromatin.
Academic Article X-inactivation reveals epigenetic anomalies in most hESC but identifies sublines that initiate as expected.
Academic Article Maternal Rnf12/RLIM is required for imprinted X-chromosome inactivation in mice.
Academic Article Paternal RLIM/Rnf12 is a survival factor for milk-producing alveolar cells.
Concept X Chromosome Inactivation
Academic Article Interview: from Down's syndrome to basic epigenetics and back again.
Academic Article RLIM is dispensable for X-chromosome inactivation in the mouse embryonic epiblast.
Academic Article Regulation of X-linked gene expression during early mouse development by Rlim.
Academic Article SAF-A Requirement in Anchoring XIST RNA to Chromatin Varies in Transformed and Primary Cells.
Academic Article Inducible XIST-dependent X-chromosome inactivation in human somatic cells is reversible.
Academic Article Rlim-Dependent and -Independent Pathways for X Chromosome Inactivation in Female ESCs.
Academic Article Silencing Trisomy 21 with XIST in Neural Stem Cells Promotes Neuronal Differentiation.
Academic Article Early chromosome condensation by XIST builds A-repeat RNA density that facilitates gene silencing.
Academic Article Trisomy silencing by XIST: translational prospects and challenges.
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  • X Chromosome Inactivation