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Loss of SETDB1 decompacts the inactive X chromosome in part through reactivation of an enhancer in the IL1RAPL1 gene.
Loss of SETDB1 decompacts the inactive X chromosome in part through reactivation of an enhancer in the IL1RAPL1 gene.
Exploring Cis Elements and Trans-Acting Factors Involved in the Human Inactive X Chromosome Organization and Compaction
Exploring Cis Elements and Trans-Acting Factors Involved in the Human Inactive X Chromosome Organization and Compaction
Deletion of DXZ4 on the human inactive X chromosome alters higher-order genome architecture.
Deletion of DXZ4 on the human inactive X chromosome alters higher-order genome architecture.
Loss Of Setdb1 Decompacts The Inactive X Chromosome In Part Through Reactivation Of An Enhancer In The Il1rapl1 Gene
Loss Of Setdb1 Decompacts The Inactive X Chromosome In Part Through Reactivation Of An Enhancer In The Il1rapl1 Gene