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CRL4-DCAF12 Ubiquitin Ligase Controls MOV10 RNA Helicase during Spermatogenesis and T Cell Activation
Tomas Lidak1,2, Nikol Baloghova1, Vladimir Korinek1,3
1Laboratory of Cancer Biology, Institute of Molecular Genetics of the Czech Academy of Sciences, 252 42 Vestec, Czech Republic.
Abstract:
Multisubunit cullin-RING ubiquitin ligase 4 (CRL4)-DCAF12 recognizes the C-terminal degron containing acidic amino acid residues. However, its physiological roles and substrates are largely unknown. Purification of CRL4-DCAF12 complexes revealed a wide range of potential substrates, including MOV10, an "ancient" RNA-induced silencing complex (RISC) complex RNA helicase. We show that DCAF12 controls the MOV10 protein level via its C-terminal motif in a proteasome- and CRL-dependent manner. Next, we generated Dcaf12 knockout mice and demonstrated that the DCAF12-mediated degradation of MOV10 is conserved in mice and humans. Detailed analysis of Dcaf12-deficient mice revealed that their testes produce fewer mature sperms, phenotype accompanied by elevated MOV10 and imbalance in meiotic markers SCP3 and γ-H2AX. Additionally, the percentages of splenic CD4+ T and natural killer T (NKT) cell populations were significantly altered. In vitro, activated Dcaf12-deficient T cells displayed inappropriately stabilized MOV10 and increased levels of activated caspases. In summary, we identified MOV10 as a novel substrate of CRL4-DCAF12 and demonstrated the biological relevance of the DCAF12-MOV10 pathway in spermatogenesis and T cell activation.
Insights
The cullin-RING ubiquitin ligase 4 (CRL4)-DCAF12 pathway targets MOV10 for degradation. This pathway is crucial for normal spermatogenesis and T cell function in mice and humans.
Area of Science:
- Cellular Biology
- Molecular Biology
- Immunology
Background:
- The cullin-RING ubiquitin ligase 4 (CRL4)-DCAF12 complex's substrates and physiological roles are largely unknown.
- CRL4-DCAF12 recognizes C-terminal degrons with acidic amino acid residues.
Purpose of the Study:
- To identify substrates of CRL4-DCAF12 and elucidate its physiological functions.
- To investigate the role of the DCAF12-MOV10 interaction in biological processes.
Main Methods:
- Purification of CRL4-DCAF12 complexes to identify interacting proteins.
- Generation and analysis of Dcaf12 knockout mice.
- Assessment of spermatogenesis, immune cell populations, and T cell activation in vitro.
Main Results:
- MOV10, an RNA helicase, was identified as a novel substrate of CRL4-DCAF12.
- DCAF12-mediated degradation of MOV10 is conserved in mice and humans.
- Dcaf12 deficiency in mice leads to impaired spermatogenesis and altered T and NKT cell populations, with elevated MOV10 levels.
Conclusions:
- MOV10 is a novel substrate of CRL4-DCAF12, and the DCAF12-MOV10 pathway is critical for spermatogenesis and T cell activation.
- The findings highlight the biological significance of CRL4-DCAF12 in regulating protein homeostasis and cellular functions.
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