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Cell-type specific profiling of histone post-translational modifications in the adult mouse striatum.


ABSTRACT: Epigenetic gene regulation in the heterogeneous brain remains challenging to decipher with current strategies. Bulk tissue analysis from pooled subjects reflects the average of cell-type specific changes across cell-types and individuals, which obscures causal relationships between epigenetic modifications, regulation of gene expression, and complex pathology. To address these limitations, we optimized a hybrid protocol, ICuRuS, for the isolation of nuclei tagged in specific cell-types and histone post translational modification profiling from the striatum of a single mouse. We combined affinity-based isolation of the medium spiny neuron subtypes, Adenosine 2a Receptor or Dopamine Receptor D1, with cleavage of histone-DNA complexes using an antibody-targeted micrococcal nuclease to release DNA complexes for paired end sequencing. Unlike fluorescence activated cell sorting paired with chromatin immunoprecipitation, ICuRuS allowed for robust epigenetic profiling at cell-type specific resolution. Our analysis provides a framework to understand combinatorial relationships between neuronal-subtype-specific epigenetic modifications and gene expression.

SUBMITTER: Carpenter MD 

PROVIDER: S-EPMC9747932 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Cell-type specific profiling of histone post-translational modifications in the adult mouse striatum.

Carpenter Marco D MD   Fischer Delaney K DK   Zhang Shuo S   Bond Allison M AM   Czarnecki Kyle S KS   Woolf Morgan T MT   Song Hongjun H   Heller Elizabeth A EA  

Nature communications 20221213 1


Epigenetic gene regulation in the heterogeneous brain remains challenging to decipher with current strategies. Bulk tissue analysis from pooled subjects reflects the average of cell-type specific changes across cell-types and individuals, which obscures causal relationships between epigenetic modifications, regulation of gene expression, and complex pathology. To address these limitations, we optimized a hybrid protocol, ICuRuS, for the isolation of nuclei tagged in specific cell-types and histo  ...[more]

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