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1.
Nat Commun ; 13(1): 1960, 2022 04 12.
Article in English | MEDLINE | ID: mdl-35413948

ABSTRACT

Chromosomes are hierarchically folded within cell nuclei into territories, domains and subdomains, but the functional importance and evolutionary dynamics of these hierarchies are poorly defined. Here, we comprehensively profile genome organizations of five Anopheles mosquito species and show how different levels of chromatin architecture influence each other. Patterns observed on Hi-C maps are associated with known cytological structures, epigenetic profiles, and gene expression levels. Evolutionary analysis reveals conservation of chromatin architecture within synteny blocks for tens of millions of years and enrichment of synteny breakpoints in regions with increased genomic insulation. However, in-depth analysis shows a confounding effect of gene density on both insulation and distribution of synteny breakpoints, suggesting limited causal relationship between breakpoints and regions with increased genomic insulation. At the level of individual loci, we identify specific, extremely long-ranged looping interactions, conserved for ~100 million years. We demonstrate that the mechanisms underlying these looping contacts differ from previously described Polycomb-dependent interactions and clustering of active chromatin.


Subject(s)
Anopheles , Animals , Anopheles/genetics , Chromatin/genetics
2.
Sci Rep ; 11(1): 4414, 2021 02 24.
Article in English | MEDLINE | ID: mdl-33627746

ABSTRACT

Generation of mature red blood cells, consisting mainly of hemoglobin, is a remarkable example of coordinated action of various signaling networks. Chromatin condensation is an essential step for terminal erythroid differentiation and subsequent nuclear expulsion in mammals. Here, we profiled 3D genome organization in the blood cells from ten species belonging to different vertebrate classes. Our analysis of contact maps revealed a striking absence of such 3D interaction patterns as loops or TADs in blood cells of all analyzed representatives. We also detect large-scale chromatin rearrangements in blood cells from mammals, birds, reptiles and amphibians: their contact maps display strong second diagonal pattern, representing an increased frequency of long-range contacts, unrelated to TADs or compartments. This pattern is completely atypical for interphase chromosome structure. We confirm that these principles of genome organization are conservative in vertebrate erythroid cells.


Subject(s)
Erythrocytes/physiology , Genome/genetics , Vertebrates/genetics , Amphibians/genetics , Animals , Birds/genetics , Cell Nucleus/genetics , Chromatin/genetics , Erythroid Cells/cytology , Interphase/genetics , Mammals/genetics , Mice , Mice, Inbred C57BL , Reptiles/genetics
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