SMG6 localizes to the chromatoid body and shapes the male germ cell transcriptome to drive spermatogenesis

Author:

Lehtiniemi Tiina1,Bourgery Matthieu1,Ma Lin1ORCID,Ahmedani Ammar1,Mäkelä Margareeta1,Asteljoki Juho1,Olotu Opeyemi1,Laasanen Samuli1,Zhang Fu-Ping123,Tan Kun4ORCID,Chousal Jennifer N4,Burow Dana4,Koskinen Satu5,Laiho Asta5,Elo Laura L15,Chalmel Frédéric6ORCID,Wilkinson Miles F47,Kotaja Noora1ORCID

Affiliation:

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

2. Turku Center for Disease Modeling, University of Turku , Turku , Finland

3. GM-Unit, Helsinki Institute of Life Science, Faculty of Medicine, University of Helsinki , Helsinki , Finland

4. Department of Obstetrics, Gynecology, and Reproductive Sciences, School of Medicine, University of California San Diego , La Jolla , CA 92093 , USA

5. Turku Bioscience Centre, University of Turku and Åbo Akademi University , Turku , Finland

6. University of Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail) - UMR_S 1085 , F-35000 , Rennes , France

7. Institute for Genomic Medicine (IGM), University of California , San Diego, La Jolla , CA 92093 , USA

Abstract

Abstract Nonsense-mediated RNA decay (NMD) is a highly conserved and selective RNA turnover pathway that depends on the endonuclease SMG6. Here, we show that SMG6 is essential for male germ cell differentiation in mice. Germ-cell conditional knockout (cKO) of Smg6 induces extensive transcriptome misregulation, including a failure to eliminate meiotically expressed transcripts in early haploid cells, and accumulation of NMD target mRNAs with long 3′ untranslated regions (UTRs). Loss of SMG6 in the male germline results in complete arrest of spermatogenesis at the early haploid cell stage. We find that SMG6 is strikingly enriched in the chromatoid body (CB), a specialized cytoplasmic granule in male germ cells also harboring PIWI-interacting RNAs (piRNAs) and the piRNA-binding protein PIWIL1. This raises the possibility that SMG6 and the piRNA pathway function together, which is supported by several findings, including that Piwil1-KO mice phenocopy Smg6-cKO mice and that SMG6 and PIWIL1 co-regulate many genes in round spermatids. Together, our results demonstrate that SMG6 is an essential regulator of the male germline transcriptome, and highlight the CB as a molecular platform coordinating RNA regulatory pathways to control sperm production and fertility.

Funder

Academy of Finland

Sigrid Jusélius Foundation

Jalmari and Rauha Ahokas Foundation

Novo Nordisk Foundation

Turku Doctoral Programme of Molecular Medicine

Finnish Cultural Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics

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