Sam68 regulates translation of target mRNAs in male germ cells, necessary for mouse spermatogenesis

Author:

Paronetto Maria Paola12,Messina Valeria12,Bianchi Enrica12,Barchi Marco1,Vogel Gillian333,Moretti Costanzo1,Palombi Fioretta4,Stefanini Mario4,Geremia Raffaele1,Richard Stéphane333,Sette Claudio12

Affiliation:

1. Department of Public Health and Cell Biology, Section of Anatomy, and Department of Internal Medicine, University of Rome Tor Vergata, 00133 Rome, Italy

2. Laboratory of Neuroembryology, Fondazione Santa Lucia, 00143 Rome, Italy

3. Terry Fox Molecular Oncology Group and the Bloomfield Center for Research on Aging, Lady Davis Institute for Medical Research, Sir Mortimer B. Davis Jewish General Hospital, Department of Oncology, and Department of Medicine, McGill University, Montréal, Québec, Canada, H3T1E2

4. Department of Histology and Medical Embryology, Università di Roma La Sapienza, 00110 Rome, Italy

Abstract

Sam68 is a KH-type RNA-binding protein involved in several steps of RNA metabolism with potential implications in cell differentiation and cancer. However, its physiological roles are still poorly understood. Herein, we show that Sam68−/− male mice are infertile and display several defects in spermatogenesis, demonstrating an essential role for Sam68 in male fertility. Sam68−/− mice produce few spermatozoa, which display dramatic motility defects and are unable to fertilize eggs. Expression of a subset of messenger mRNAs (mRNAs) is affected in the testis of knockout mice. Interestingly, Sam68 is associated with polyadenylated mRNAs in the cytoplasm during the meiotic divisions and in round spermatids, when it interacts with the translational machinery. We show that Sam68 is required for polysomal recruitment of specific mRNAs and for accumulation of the corresponding proteins in germ cells and in a heterologous system. These observations demonstrate a novel role for Sam68 in mRNA translation and highlight its essential requirement for the development of a functional male gamete.

Publisher

Rockefeller University Press

Subject

Cell Biology

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