Intermitochondrial cement (IMC) harbors piRNA biogenesis machinery and exonuclease domain‐containing proteins EXD1 and EXD2 in mouse spermatocytes

Author:

Olotu Opeyemi1,Dowling Mark2,Homolka David2,Wojtas Magdalena N.23,Tran Panyi1,Lehtiniemi Tiina1,Da Ros Matteo1,Pillai Ramesh S.2,Kotaja Noora1ORCID

Affiliation:

1. Institute of Biomedicine, Integrative Physiology and Pharmacology Unit University of Turku Turku Finland

2. Department of Molecular Biology, Science III University of Geneva Geneva Switzerland

3. Instituto Biofisika (UPV/EHU, CSIC) University of the Basque Country Leioa Spain

Abstract

AbstractBackgroundGerm granules are large cytoplasmic ribonucleoprotein complexes that emerge in the germline to participate in RNA regulation. The two most prominent germ granules are the intermitochondrial cement (IMC) in meiotic spermatocytes and the chromatoid body (CB) in haploid round spermatids, both functionally linked to the PIWI‐interacting RNA (piRNA) pathway.AimsIn this study, we clarified the IMC function by identifying proteins that form complexes with a well‐known IMC protein PIWIL2/MILI in the mouse testis.ResultsThe PIWIL2 interactome included several proteins with known functions in piRNA biogenesis. We further characterized the expression and localization of two of the identified proteins, Exonuclease 3′–5′ domain‐containing proteins EXD1 and EXD2, and confirmed their localization to the IMC. We showed that EXD2 interacts with PIWIL2, and that the mutation of Exd2 exonuclease domain in mice induces misregulation of piRNA levels originating from specific pachytene piRNA clusters, but does not disrupt male fertility.ConclusionAltogether, this study highlights the central role of the IMC as a platform for piRNA biogenesis, and suggests that EXD1 and EXD2 function in the IMC‐mediated RNA regulation in postnatal male germ cells.

Publisher

Wiley

Subject

Urology,Endocrinology,Reproductive Medicine,Endocrinology, Diabetes and Metabolism

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