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Loss of R2D2 proteins ROPN1 and ROPN1L causes defects in murine sperm motility, phosphorylation, and fibrous sheath
Sarah E Fiedler1, Tejasvi Dudiki, Srinivasan Vijayaraghavan
1Portland Veterans Affairs Medical Center and Department of Medicine, Oregon Health & Science University, Portland, OR 97239, USA.
Abstract:
The fibrous sheath (FS) is a flagellar cytoskeletal structure unique to sperm that surrounds the outer dense fibers and axoneme. Its primary components are A-kinase anchoring proteins (AKAPs) 3 and 4, which suggests that the FS affects flagellar beating via the scaffolding of signaling pathways necessary for motility. Sperm proteins ROPN1 and ROPN1L bind AKAP3. To determine the role of ROPN1 and ROPN1L in sperm function, we created mice deficient in ROPN1 (RKO), mice deficient in ROPN1L (RLKO), and double knockout mice (DKO). All three strains of mice had normal testicular morphology and spermatogenesis. Only the DKOs had obvious defects in sperm morphology (thinning and shredding of the principal piece), which was accompanied by a reduction in AKAP3 levels. RLKO mice had slightly reduced sperm motility and increased levels of ROPN1. RKO mice had moderately impaired motility and increased levels of ROPN1L. DKO sperm were immotile. We have previously determined that RKO male mice are subfertile, and DKO males are infertile. Together these data indicate that ROPN1L and ROPN1 compensate for each other in the absence of the opposing protein, possibly to maintain AKAP3 incorporation in the FS. Sperm from mice lacking ROPN1L exhibited reductions in both cAMP-dependent protein kinase (PKA) phosphorylation of a 270-kDa protein (perhaps FSCB), and in capacitation-induced tyrosine phosphorylation. Sperm from mice lacking ROPN1 had reduced levels of FSCB and increased tyrosine phosphorylation of noncapacitated sperm. These data demonstrate that mutations in ROPN1 and ROPN1L can cause defects in FS integrity, sperm motility, and PKA-dependent signaling processes, leading to male infertility.
Insights
ROPN1 and ROPN1L proteins are crucial for sperm fibrous sheath integrity and motility. Their absence leads to defects in sperm function and male infertility, highlighting their compensatory roles in male reproductive health.
Area of Science:
- Reproductive Biology
- Sperm Physiology
- Molecular Cell Biology
Background:
- The fibrous sheath (FS) is vital for sperm motility, primarily composed of AKAP3 and AKAP4.
- ROPN1 and ROPN1L proteins bind AKAP3, suggesting a role in FS structure and sperm function.
Purpose of the Study:
- To investigate the roles of ROPN1 and ROPN1L in sperm function and male fertility.
- To determine the compensatory interactions between ROPN1 and ROPN1L.
Main Methods:
- Generation of ROPN1-deficient (RKO), ROPN1L-deficient (RLKO), and double knockout (DKO) mice.
- Analysis of sperm morphology, motility, AKAP3 levels, and PKA-dependent phosphorylation.
Main Results:
- DKO mice exhibited severe sperm morphological defects and immotility, leading to infertility.
- RLKO and RKO mice showed impaired motility and altered protein phosphorylation patterns.
- ROPN1 and ROPN1L demonstrated compensatory roles in maintaining FS integrity and sperm function.
Conclusions:
- ROPN1 and ROPN1L are essential for normal sperm motility and fertility.
- Defects in ROPN1 and ROPN1L disrupt FS integrity, PKA signaling, and sperm capacitation.
- These proteins compensate for each other, underscoring their importance in male reproductive health.
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