The activity-dependent histone variant H2BE modulates the life span of olfactory neurons

Author:

Santoro Stephen W1,Dulac Catherine1

Affiliation:

1. Howard Hughes Medical Institute, Department of Molecular and Cellular Biology, Harvard University, Cambridge, United States

Abstract

We have identified a replication-independent histone variant, Hist2h2be (referred to herein as H2be), which is expressed exclusively by olfactory chemosensory neurons. Levels of H2BE are heterogeneous among olfactory neurons, but stereotyped according to the identity of the co-expressed olfactory receptor (OR). Gain- and loss-of-function experiments demonstrate that changes in H2be expression affect olfactory function and OR representation in the adult olfactory epithelium. We show that H2BE expression is reduced by sensory activity and that it promotes neuronal cell death, such that inactive olfactory neurons display higher levels of the variant and shorter life spans. Post-translational modifications (PTMs) of H2BE differ from those of the canonical H2B, consistent with a role for H2BE in altering transcription. We propose a physiological function for H2be in modulating olfactory neuron population dynamics to adapt the OR repertoire to the environment.

Funder

National Institutes of Health

Howard Hughes Medical Institute

Burroughs Wellcome Fund

Publisher

eLife Sciences Publications, Ltd

Subject

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

Reference66 articles.

1. Histone variants in metazoan development;Banaszynski;Dev Cell,2010

2. High-resolution profiling of histone methylations in the human genome;Barski;Cell,2007

3. Controlling the false discovery rate—a practical and powerful approach to multiple testing;Benjamini;J Roy Stat Soc B Met,1995

4. Odorant receptor expression defines functional units in the mouse olfactory system;Bozza;J Neurosci,2002

5. A novel multigene family may encode odorant receptors: a molecular basis for odor recognition;Buck;Cell,1991

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