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Updated: Jul 19, 2025

Analysis of Chromosome Segregation, Histone Acetylation, and Spindle Morphology in Horse Oocytes
Published on: May 11, 2017
The formins inhibitor SMIFH2 inhibits the cytoskeleton dynamics and mitochondrial function during goat oocyte
Meng-Hao Pan1, Rui Xu1, Zhi Zheng1
1College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, China; Key Laboratory of Animal Biotechnology, Ministry of Agriculture, Yangling, Shaanxi, China.
Abstract:
The cytoskeleton plays a crucial role in facilitating the successful completion of the meiotic maturation of oocytes. Its influence extends to the process of oocyte nuclear maturation and the proper functioning of various organelles during cytoplasmic maturation. The formin family of proteins plays a crucial role in the molecular regulation of cytoskeletal assembly and organization; however, its role in goat oocytes are not fully understood. Our study examined the inhibition of formins activity, which revealed its crucial role in the maturation of goat oocytes. We observed that the inhibition of formins resulted in meiotic defects in goat oocytes, as evidenced by the hindered extrusion of polar bodies and the expansion of cumulus cells. Additionally, the oocytes exhibited altered actin dynamics and compromised spindle/chromosome structure upon formins inhibition. The results of the transcriptomic analysis highlighted a noteworthy alteration in the mRNA levels of genes implicated in mitochondrial functions and oxidative phosphorylation in formins inhibited oocytes. Validation experiments provided evidence that the meiotic defects observed in these oocytes were due to the excessive early apoptosis induced by reactive oxygen species (ROS). Our findings demonstrate that the involvement of formins in sustaining the cytoskeletal dynamics and mitochondrial function is crucial for the successful meiotic maturation of goat oocytes.
Insights
Formins are essential for goat oocyte maturation, maintaining cytoskeletal dynamics and mitochondrial function. Inhibiting formins causes meiotic defects and apoptosis due to reactive oxygen species (ROS).
Area of Science:
- Reproductive Biology
- Cell Biology
- Molecular Biology
Background:
- The cytoskeleton is vital for oocyte meiotic maturation, influencing nuclear and cytoplasmic development.
- Formins regulate cytoskeletal assembly, but their specific role in goat oocytes remains unclear.
Purpose of the Study:
- To investigate the role of formins in goat oocyte meiotic maturation.
- To elucidate the impact of formin inhibition on oocyte cytoskeletal organization, spindle integrity, and mitochondrial function.
Main Methods:
- Formin activity was inhibited in goat oocytes.
- Meiotic progression, polar body extrusion, and cumulus cell expansion were assessed.
- Actin dynamics, spindle/chromosome structure, and gene expression (transcriptomics) were analyzed.
- Reactive oxygen species (ROS) levels and apoptosis were quantified.
Main Results:
- Formin inhibition led to meiotic defects, including hindered polar body extrusion and abnormal cumulus cell expansion.
- Altered actin dynamics, compromised spindle/chromosome structures, and disrupted mitochondrial gene expression were observed.
- Formin inhibition induced excessive early apoptosis mediated by reactive oxygen species (ROS).
Conclusions:
- Formins are crucial for maintaining cytoskeletal dynamics essential for goat oocyte meiotic maturation.
- Formins play a significant role in regulating mitochondrial function and preventing ROS-induced apoptosis during oocyte maturation.
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