Despite its sequence identity with canonical H4, Drosophila H4r product is enriched at specific chromatin regions

Ábrahám, Andrea [Ábrahám, Andrea (molekuláris biológia), author] Institute of Biochemistry; Doctoral School of Biology (SZTE / DI); Department of Biochemistry and Molecular Biology (SZTE / TTIK / BI); Villányi, Zoltán [Villanyi, Zoltan (Biokémia es molek...), author] Department of Biochemistry and Molecular Biology (SZTE / TTIK / BI); Zsindely, Nóra [Zsindely, Nóra (Molekuláris biológia), author] Department of Genetics (SZTE / TTIK / BI); Nagy, Gábor [Nagy, Gábor (bioinformatika), author] Department of Biochemistry and Molecular Biology (SZTE / TTIK / BI); Szabó, Áron [Szabó, Áron (biokémia), author] Institute of Genetics; Department of Biochemistry and Molecular Biology (SZTE / TTIK / BI); Bodai, László [Bodai, László (Molekuláris bioló...), author] Department of Biochemistry and Molecular Biology (SZTE / TTIK / BI); Henn, László [Henn, László (genetika), author] Institute of Biochemistry; Institute of Genetics; Boros, Imre ✉ [Boros, Imre Miklós (Molekuláris biológia), author] Institute of Biochemistry; Department of Biochemistry and Molecular Biology (SZTE / TTIK / BI)

English Article (Journal Article) Scientific
Published: SCIENTIFIC REPORTS 2045-2322 12 (1) Paper: 5007 , 11 p. 2022
  • Szociológiai Tudományos Bizottság: A nemzetközi
  • Regionális Tudományok Bizottsága: B nemzetközi
  • SJR Scopus - Multidisciplinary: D1
Identifiers
Histone variants are different from their canonical counterparts in structure and are encoded by solitary genes with unique regulation to fulfill tissue or differentiation specific functions. A single H4 variant gene (His4r or H4r) that is located outside of the histone cluster and gives rise to a polyA tailed messenger RNA via replication-independent expression is preserved in Drosophila strains despite that its protein product is identical with canonical H4. In order to reveal information on the possible role of this alternative H4 we epitope tagged endogenous H4r and studied its spatial and temporal expression, and revealed its genome-wide localization to chromatin at the nucleosomal level. RNA and immunohistochemistry analysis of H4r expressed under its cognate regulation indicate expression of the gene throughout zygotic and larval development and presence of the protein product is evident already in the pronuclei of fertilized eggs. In the developing nervous system a slight disequibrium in H4r distribution is observable, cholinergic neurons are the most abundant among H4r-expressing cells. ChIP-seq experiments revealed H4r association with regulatory regions of genes involved in cellular stress response. The data presented here indicate that H4r has a variant histone function.
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2025-07-19 10:12