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Highly structured homolog pairing reflects functional organization of the Drosophila genome
The genome-wide multi-layered architecture of chromosome pairing in early Drosophila embryos
Heterochromatin drives compartmentalization of inverted and conventional nuclei
SMC complexes differentially compact mitotic chromosomes according to genomic context
Genome-wide maps of nuclear lamina interactions in single human cells
Cohesin-dependent globules and heterochromatin shape 3D genome architecture in textitS. pombe
Organization of the mitotic chromosome
Iterative correction of Hi-C data reveals hallmarks of chromosome organization
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