Dual role of histone variant H3.3B in spermatogenesis: positive regulation of piRNA transcription and implication in X-chromosome inactivation

Author:

Fontaine Emeline1,Papin Christophe2ORCID,Martinez Guillaume1,Le Gras Stéphanie2,Nahed Roland Abi1,Héry Patrick3,Buchou Thierry1,Ouararhni Khalid2,Favier Bertrand4,Gautier Thierry1,Sabir Jamal S M5ORCID,Gerard Matthieu3,Bednar Jan1ORCID,Arnoult Christophe1,Dimitrov Stefan167ORCID,Hamiche Ali25ORCID

Affiliation:

1. Université Grenoble Alpes, CNRS UMR 5309, INSERM U1209, Institute for Advanced Biosciences (IAB), Site Sante′ – Allée des Alpes , La Tronche 38700, France

2. Institut de Génétique et Biologie Moléculaire et Cellulaire (IGBMC)/Université de Strasbourg/ CNRS/INSERM , 67404 Illkirch Cedex, France

3. Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Univ. Paris-Sud, Université Paris-Saclay , Gif-sur-Yvette 91198, France

4. Université de Grenoble Alpes, Etablissement Français du Sang , EA 7408, BP35, 38701 La Tronche, France

5. Centre of Excellence in Bionanoscience Research, King Abdulaziz University , Jeddah 21589, Saudi Arabia

6. “Roumen Tsanev” Institute of Molecular Biology, Bulgarian Academy of Sciences , Sofia, Bulgaria

7. Izmir Biomedicine and Genome Center, Dokuz Eylul University Health Campus , Izmir 35330, Turkey

Abstract

Abstract The histone variant H3.3 is encoded by two distinct genes, H3f3a and H3f3b, exhibiting identical amino-acid sequence. H3.3 is required for spermatogenesis, but the molecular mechanism of its spermatogenic function remains obscure. Here, we have studied the role of each one of H3.3A and H3.3B proteins in spermatogenesis. We have generated transgenic conditional knock-out/knock-in (cKO/KI) epitope-tagged FLAG-FLAG-HA-H3.3B (H3.3BHA) and FLAG-FLAG-HA-H3.3A (H3.3AHA) mouse lines. We show that H3.3B, but not H3.3A, is required for spermatogenesis and male fertility. Analysis of the molecular mechanism unveils that the absence of H3.3B led to alterations in the meiotic/post-meiotic transition. Genome-wide RNA-seq reveals that the depletion of H3.3B in meiotic cells is associated with increased expression of the whole sex X and Y chromosomes as well as of both RLTR10B and RLTR10B2 retrotransposons. In contrast, the absence of H3.3B resulted in down-regulation of the expression of piRNA clusters. ChIP-seq experiments uncover that RLTR10B and RLTR10B2 retrotransposons, the whole sex chromosomes and the piRNA clusters are markedly enriched of H3.3. Taken together, our data dissect the molecular mechanism of H3.3B functions during spermatogenesis and demonstrate that H3.3B, depending on its chromatin localization, is involved in either up-regulation or down-regulation of expression of defined large chromatin regions.

Funder

CNRS

Inserm

Université de Strasbourg

Université de Grenoble Alpes

La Ligue Nationale contre le Cancer Equipe labellisée

INCA

ANR

France Génomique

Publisher

Oxford University Press (OUP)

Subject

Genetics

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