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Updated: Apr 19, 2026

Chromatin Immunoprecipitation ChIP using Drosophila tissue
Published on: March 23, 2012
Novel H3K4me3 marks are enriched at human- and chimpanzee-specific cytogenetic structures
Giuliana Giannuzzi1, Eugenia Migliavacca2, Alexandre Reymond1
1Center for Integrative Genomics, University of Lausanne, 1015 Lausanne, Switzerland; giuliana.giannuzzi@unil.ch alexandre.reymond@unil.ch.
Abstract:
Human and chimpanzee genomes are 98.8% identical within comparable sequences. However, they differ structurally in nine pericentric inversions, one fusion that originated human chromosome 2, and content and localization of heterochromatin and lineage-specific segmental duplications. The possible functional consequences of these cytogenetic and structural differences are not fully understood and their possible involvement in speciation remains unclear. We show that subtelomeric regions--regions that have a species-specific organization, are more divergent in sequence, and are enriched in genes and recombination hotspots--are significantly enriched for species-specific histone modifications that decorate transcription start sites in different tissues in both human and chimpanzee. The human lineage-specific chromosome 2 fusion point and ancestral centromere locus as well as chromosome 1 and 18 pericentric inversion breakpoints showed enrichment of human-specific H3K4me3 peaks in the prefrontal cortex. Our results reveal an association between plastic regions and potential novel regulatory elements.
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