The 3D-structure of the Immunoglobulin Heavy Chain Locus: implications for long-range genomic interactions [supplemental data]
January 2008
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The immunoglobulin heavy-chain (Igh) locus is organized into distinct regions that contain multiple variable (VH), diversity (DH), joining (JH) and constant (CH) coding elements. How the Igh locus is structured in 3D space is unknown. To probe the topography of the Igh locus, spatial distance distributions were determined between 12 genomic markers that span the entire Igh locus. Comparison of the distance distributions to computer simulations of alternative chromatin arrangements predicted that the Igh locus is organized into compartments containing clusters of loops separated by linkers. Trilateration and triplepoint angle measurements indicated the mean relative 3D positions of the VH, DH, JH, and CH elements, showed compartmentalization and striking conformational changes involving VH and DH-JH elements during early B cell development. In pro-B cells, the entire repertoire of VH regions (2 Mbp) appeared to have merged and juxtaposed to the DH elements, mechanistically permitting long-range genomic interactions to occur with relatively high frequency.
- Animals
- Nucleic Acid Conformation
- Mice
- Mice, Inbred C57BL
- Cells, Cultured
- Models, Molecular
- Cell Lineage
- genome organization
- *Genes, Immunoglobulin Heavy Chain
- B-Lymphocytes/chemistry/metabolism
- VDJ Exons
- distance
- igh locus
- pro-b cells
- genomic
- locus
- pro-b
- region
- figure
- element
- vh regions
- pre-pro-b
- genomic separation
- chromatin
- pre-pro-b cells
- marker
- topology
- genomic markers
- separation
- model
- igh topology