Knockdown of DOM/Tip60 Complex Subunits Impairs Male Meiosis of Drosophila melanogaster

Author:

Prozzillo Yuri1ORCID,Fattorini Gaia12ORCID,Ferreri Diego1ORCID,Leo Manuela3ORCID,Dimitri Patrizio1ORCID,Messina Giovanni145ORCID

Affiliation:

1. Department of Biology and Biotechnology “Charles Darwin”, Sapienza University of Rome, 00185 Rome, Italy

2. Institute of Molecular Biology and Pathology (IBPM), Consiglio Nazionale delle Ricerche (CNR), Sapienza University of Rome, 00185 Rome, Italy

3. Department of Sciences and Technologies, University of Sannio, 82100 Benevento, Italy

4. Pasteur Institute, Fondazione Cenci-Bolognetti, 00161 Rome, Italy

5. Department of Biotechnology and Biosciences, Milano-Bicocca University, 20126 Milan, Italy

Abstract

ATP-dependent chromatin remodeling complexes are involved in nucleosome sliding and eviction and/or the incorporation of histone variants into chromatin to facilitate several cellular and biological processes, including DNA transcription, replication and repair. The DOM/TIP60 chromatin remodeling complex of Drosophila melanogaster contains 18 subunits, including the DOMINO (DOM), an ATPase that catalyzes the exchange of the canonical H2A with its variant (H2A.V), and TIP60, a lysine-acetyltransferase that acetylates H4, H2A and H2A.V histones. In recent decades, experimental evidence has shown that ATP-dependent chromatin remodeling factors, in addition to their role in chromatin organization, have a functional relevance in cell division. In particular, emerging studies suggested the direct roles of ATP-dependent chromatin remodeling complex subunits in controlling mitosis and cytokinesis in both humans and D. melanogaster. However, little is known about their possible involvement during meiosis. The results of this work show that the knockdown of 12 of DOM/TIP60 complex subunits generates cell division defects that, in turn, cause total/partial sterility in Drosophila males, providing new insights into the functions of chromatin remodelers in cell division control during gametogenesis.

Funder

MIUR-PRIN 2017

Pasteur Institute of Italy

Publisher

MDPI AG

Subject

General Medicine

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