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Updated: Nov 20, 2025

Studying Mitochondrial Structure and Function in Drosophila Ovaries
Published on: January 4, 2017
Mitochondrial fission factor (Mff) is required for organization of the mitochondrial sheath in spermatids
Grigor Varuzhanyan1, Hsiuchen Chen1, Rebecca Rojansky1
1Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
Background:
Mitochondrial fission counterbalances fusion to maintain organelle morphology, but its role during development remains poorly characterized. Mammalian spermatogenesis is a complex developmental process involving several drastic changes to mitochondrial shape and organization. Mitochondria are generally small and spherical in spermatogonia, elongate during meiosis, and fragment in haploid round spermatids. Near the end of spermatid maturation, small mitochondrial spheres line the axoneme, elongate, and tightly wrap around the midpiece to form the mitochondrial sheath, which is critical for fueling flagellar movements. It remains unclear how these changes in mitochondrial morphology are regulated and how they affect sperm development.
Methods:
We used genetic ablation of Mff (mitochondrial fission factor) in mice to investigate the role of mitochondrial fission during mammalian spermatogenesis.
Results:
Our analysis indicates that Mff is required for mitochondrial fragmentation in haploid round spermatids and for organizing mitochondria in the midpiece in elongating spermatids. In Mff mutant mice, round spermatids have aberrantly elongated mitochondria that often show central constrictions, suggestive of failed fission events. In elongating spermatids and spermatozoa, mitochondrial sheaths are disjointed, containing swollen mitochondria with large gaps between organelles. These mitochondrial abnormalities in Mff mutant sperm are associated with reduced respiratory chain Complex IV activity, aberrant sperm morphology and motility, and reduced fertility.
Conclusions:
Mff is required for organization of the mitochondrial sheath in mouse sperm.
General Significance:
Mitochondrial fission plays an important role in regulating mitochondrial organization during a complex developmental process.
Insights
Mitochondrial fission factor (Mff) is essential for sperm development. Ablating Mff disrupts mitochondrial organization in sperm, leading to impaired motility and reduced fertility in mice.
Area of Science:
- Cell Biology
- Developmental Biology
- Reproductive Biology
Background:
- Mitochondrial morphology undergoes significant changes during mammalian spermatogenesis.
- The precise regulation of mitochondrial fission and fusion in sperm development is not well understood.
- Mitochondrial organization is critical for providing energy for sperm motility.
Purpose of the Study:
- To investigate the role of mitochondrial fission factor (Mff) in mammalian spermatogenesis.
- To elucidate how Mff regulates mitochondrial morphology and organization during sperm development.
Main Methods:
- Genetic ablation of Mff in mice.
- Analysis of mitochondrial morphology and organization in spermatogenic cells and spermatozoa.
- Assessment of sperm motility, morphology, and fertility.
Main Results:
- Mff is required for mitochondrial fragmentation in round spermatids.
- Mff deficiency leads to aberrant mitochondrial organization in the midpiece of elongating spermatids and spermatozoa.
- Mff mutant sperm exhibit reduced respiratory chain Complex IV activity, abnormal morphology, poor motility, and decreased fertility.
Conclusions:
- Mff plays a critical role in organizing the mitochondrial sheath in mouse sperm.
- Mitochondrial fission is crucial for regulating mitochondrial organization during complex developmental processes like spermatogenesis.
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