Binary outcomes of enhancer activity underlie stable random monoallelic expression

Author:

Kissiov Djem U1ORCID,Ethell Alexander1,Chen Sean1,Wolf Natalie K1,Zhang Chenyu1,Dang Susanna M1,Jo Yeara1,Madsen Katrine N1,Paranjpe Ishan1,Lee Angus Y2,Chim Bryan3,Muljo Stefan A3,Raulet David H1ORCID

Affiliation:

1. Division of Immunology and Pathogenesis, Department of Molecular and Cell Biology, University of California, Berkeley

2. Cancer Research Laboratory, University of California, Berkeley

3. Laboratory of Immune System Biology, National Institute of Allergy and Infectious Diseases, National Institutes of Health

Abstract

Mitotically stable random monoallelic gene expression (RME) is documented for a small percentage of autosomal genes. We developed an in vivo genetic model to study the role of enhancers in RME using high-resolution single-cell analysis of natural killer (NK) cell receptor gene expression and enhancer deletions in the mouse germline. Enhancers of the RME NK receptor genes were accessible and enriched in H3K27ac on silent and active alleles alike in cells sorted according to allelic expression status, suggesting enhancer activation and gene expression status can be decoupled. In genes with multiple enhancers, enhancer deletion reduced gene expression frequency, in one instance converting the universally expressed gene encoding NKG2D into an RME gene, recapitulating all aspects of natural RME including mitotic stability of both the active and silent states. The results support the binary model of enhancer action, and suggest that RME is a consequence of general properties of gene regulation by enhancers rather than an RME-specific epigenetic program. Therefore, many and perhaps all genes may be subject to some degree of RME. Surprisingly, this was borne out by analysis of several genes that define different major hematopoietic lineages, that were previously thought to be universally expressed within those lineages: the genes encoding NKG2D, CD45, CD8α, and Thy-1. We propose that intrinsically probabilistic gene allele regulation is a general property of enhancer-controlled gene expression, with previously documented RME representing an extreme on a broad continuum.

Funder

National Institute of Allergy and Infectious Diseases

National Science Foundation

Cancer Research Coordinating Committee

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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