LRRC8/VRAC anion channels are required for late stages of spermatid development in mice
Jennifer C Lück1,2,3, Dmytro Puchkov1, Florian Ullrich1,2
1From the Leibniz-Forschungsinstitut für Molekulare Pharmakologie (FMP), D-13125 Berlin, Germany.
Abstract:
Spermatogenesis is a highly complex developmental process that occurs primarily in seminiferous tubules of the testes and requires additional maturation steps in the epididymis and beyond. Mutations in many different genes can lead to defective spermatozoa and hence to male infertility. Some of these genes encode for ion channels and transporters that play roles in various processes such as cellular ion homeostasis, signal transduction, sperm motility, and the acrosome reaction. Here we show that germ cell-specific, but not Sertoli cell-specific, disruption of Lrrc8a leads to abnormal sperm and male infertility in mice. LRRC8A (leucine-rich repeat containing 8A) is the only obligatory subunit of heteromeric volume-regulated anion channels (VRACs). Its ablation severely compromises cell volume regulation by completely abolishing the transport of anions and osmolytes through VRACs. Consistent with impaired volume regulation, the cytoplasm of late spermatids appeared swollen. These cells failed to properly reduce their cytoplasm during further development into spermatozoa and later displayed severely disorganized mitochondrial sheaths in the midpiece region, as well as angulated or coiled flagella. These changes, which progressed in severity on the way to the epididymis, resulted in dramatically reduced sperm motility. Our work shows that VRAC, probably through its role in cell volume regulation, is required in a cell-autonomous manner for proper sperm development and explains the male infertility of Lrrc8a-/- mice and the spontaneous mouse mutant ébouriffé.
Insights
Germ cell-specific disruption of LRRC8A (leucine-rich repeat containing 8A) causes male infertility in mice. This gene is essential for volume-regulated anion channels (VRACs) and proper sperm development.
Area of Science:
- Reproductive Biology
- Cell Biology
- Genetics
Background:
- Spermatogenesis is a complex process crucial for male fertility.
- Defects in genes, including those for ion channels, can cause male infertility.
- LRRC8A is the sole obligatory subunit of volume-regulated anion channels (VRACs).
Purpose of the Study:
- To investigate the role of LRRC8A in spermatogenesis and male fertility.
- To determine if germ cell-specific disruption of LRRC8A affects sperm development.
- To elucidate the mechanism by which LRRC8A deficiency leads to infertility.
Main Methods:
- Germ cell-specific and Sertoli cell-specific knockout mouse models for LRRC8A were generated.
- Sperm morphology, motility, and mitochondrial sheath organization were analyzed.
- Cell volume regulation and VRAC function were assessed in spermatids.
Main Results:
- Germ cell-specific, but not Sertoli cell-specific, disruption of LRRC8A resulted in abnormal sperm and male infertility.
- LRRC8A ablation abolished VRAC-mediated anion and osmolyte transport, impairing cell volume regulation.
- Spermatids showed cytoplasmic swelling, disorganized mitochondrial sheaths, and flagellar defects, leading to reduced sperm motility.
Conclusions:
- LRRC8A is essential for cell-autonomous sperm development through its role in VRAC-mediated volume regulation.
- Impaired volume regulation in spermatids due to LRRC8A deficiency causes defects in sperm morphology and motility.
- This study explains the male infertility observed in LRRC8A knockout and ébouriffé mice.
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