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Updated: Jun 29, 2026

Assessment of Mitochondrial Fission/Fusion Dynamics in Kidney Proximal Tubular Cells
Published on: November 14, 2025
The mitochondrial outer membrane protein hFis1 regulates mitochondrial morphology and fission through
Madhavika N Serasinghe1, Yisang Yoon
1Department of Biochemistry and Biophysics, Mitochondrial Research and Innovation Group, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.
Abstract:
Mitochondrial fission in mammals is mediated by at least two proteins, DLP1/Drp1 and hFis1. DLP1 mediates the scission of mitochondrial membranes through GTP hydrolysis, and hFis1 is a putative DLP1 receptor anchored at the mitochondrial outer membrane by a C-terminal single transmembrane domain. The cytosolic domain of hFis1 contains six alpha-helices (alpha1-alpha6) out of which alpha2-alpha5 form two tetratricopeptide repeat (TPR) folds. In this study, by using chimeric constructs, we demonstrated that the cytosolic domain contains the necessary information for hFis1 function during mitochondrial fission. By using transient expression of different mutant forms of the hFis1 protein, we found that hFis1 self-interaction plays an important role in mitochondrial fission. Our results show that deletion of the alpha1 helix greatly increased the formation of dimeric and oligomeric forms of hFis1, indicating that alpha1 helix functions as a negative regulator of the hFis1 self-interaction. Further mutational approaches revealed that a tyrosine residue in the alpha5 helix and the linker between alpha3 and alpha4 helices participate in hFis1 oligomerization. Mutations causing oligomerization defect greatly reduced the ability to induce not only mitochondrial fragmentation by full-length hFis1 but also the formation of swollen ball-shaped mitochondria caused by alpha1-deleted hFis1. Our data suggest that oligomerization of hFis1 in the mitochondrial outer membrane plays a role in mitochondrial fission, potentially through participating in fission factor recruitment.
Insights
Mitochondrial fission relies on the protein hFis1. This study shows hFis1 self-interaction, regulated by its alpha1 helix, is crucial for mitochondrial fission, potentially by recruiting other fission factors.
Area of Science:
- Cell biology
- Mitochondrial dynamics
Background:
- Mitochondrial fission is essential for cellular function and is regulated by proteins like DLP1 and hFis1.
- hFis1 acts as a receptor for DLP1 on the mitochondrial outer membrane.
- The cytosolic domain of hFis1, containing alpha helices, is key to its function.
Purpose of the Study:
- To investigate the role of the cytosolic domain and self-interaction of hFis1 in mitochondrial fission.
- To identify specific regions and residues involved in hFis1 oligomerization and function.
Main Methods:
- Chimeric constructs and transient expression of mutant hFis1 proteins.
- Analysis of hFis1 self-interaction, dimerization, and oligomerization.
- Mutational analysis of specific alpha helices and linker regions.
Main Results:
- The cytosolic domain of hFis1 contains essential information for mitochondrial fission.
- hFis1 self-interaction is critical for mitochondrial fission.
- The alpha1 helix negatively regulates hFis1 self-interaction; its deletion promotes oligomerization.
- Specific residues and linkers (e.g., Y in alpha5, alpha3-alpha4 linker) are involved in hFis1 oligomerization.
- Oligomerization defects impair hFis1's ability to induce mitochondrial fragmentation.
Conclusions:
- hFis1 oligomerization in the mitochondrial outer membrane is important for mitochondrial fission.
- Oligomerization may facilitate fission factor recruitment, mediating the scission process.
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