Related Experiment Video
Updated: Jan 21, 2026

Immunoglobulin Gene Sequence Analysis In Chronic Lymphocytic Leukemia: From Patient Material To Sequence Interpretation
Published on: November 26, 2018
Insight into genetic predisposition to chronic lymphocytic leukemia from integrative epigenomics
Helen E Speedy1, Renée Beekman2,3, Vicente Chapaprieta4
1Division of Genetics and Epidemiology, Institute of Cancer Research, London, SW7 3RP, UK.
None:
Genome-wide association studies have provided evidence for inherited genetic predisposition to chronic lymphocytic leukemia (CLL). To gain insight into the mechanisms underlying CLL risk we analyze chromatin accessibility, active regulatory elements marked by H3K27ac, and DNA methylation at 42 risk loci in up to 486 primary CLLs. We identify that risk loci are significantly enriched for active chromatin in CLL with evidence of being CLL-specific or differentially regulated in normal B-cell development. We then use in situ promoter capture Hi-C, in conjunction with gene expression data to reveal likely target genes of the risk loci. Candidate target genes are enriched for pathways related to B-cell development such as MYC and BCL2 signalling. At 14 loci the analysis highlights 63 variants as the probable functional basis of CLL risk. By integrating genetic and epigenetic information our analysis reveals novel insights into the relationship between inherited predisposition and the regulatory chromatin landscape of CLL.
More Related Videos
Related Concept Videos
Genetics of Speciation
What is Population Genetics?
What is Genetic Engineering?
Animal Mitochondrial Genetics
Types of Genetic Transfer Between Organisms
Definite Integral

