Atg44/Mdi1/mitofissin facilitates Dnm1-mediated mitochondrial fission
Kentaro Furukawa1,2, Manabu Hayatsu3, Kentaro Okuyama3
1Department of Cellular Physiology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Abstract:
Mitochondria undergo fission and fusion, and their coordinated balance is crucial for maintaining mitochondrial homeostasis. In yeast, the dynamin-related protein Dnm1 is a mitochondrial fission factor acting from outside the mitochondria. We recently reported the mitochondrial intermembrane space protein Atg44/mitofissin/Mdi1/Mco8 as a novel fission factor, but the relationship between Atg44 and Dnm1 remains elusive. Here, we show that Atg44 is required to complete Dnm1-mediated mitochondrial fission under homeostatic conditions. Atg44-deficient cells often exhibit enlarged mitochondria with accumulated Dnm1 and rosary-like mitochondria with Dnm1 foci at constriction sites. These mitochondrial constriction sites retain the continuity of both the outer and inner membranes within an extremely confined space, indicating that Dnm1 is unable to complete mitochondrial fission without Atg44. Moreover, accumulated Atg44 proteins are observed at mitochondrial constriction sites. These findings suggest that Atg44 and Dnm1 cooperatively execute mitochondrial fission from inside and outside the mitochondria, respectively.Abbreviation: ATG: autophagy related; CLEM: correlative light and electron microscopy; EM: electron microscopy; ER: endoplasmic reticulum; ERMES: endoplasmic reticulum-mitochondria encounter structure; GA: glutaraldehyde; GFP: green fluorescent protein; GTP: guanosine triphosphate: IMM: inner mitochondrial membrane; IMS: intermembrane space; OMM: outer mitochondrial membrane; PB: phosphate buffer; PBS: phosphate-buffered saline; PFA: paraformaldehyde; RFP: red fluorescent protein; WT: wild type.
Insights
Mitochondrial fission requires both Dnm1 and Atg44 proteins. Atg44 is essential for Dnm1 to complete mitochondrial fission, revealing a cooperative mechanism for maintaining mitochondrial homeostasis.
Area of Science:
- Cell Biology
- Mitochondrial Dynamics
Background:
- Mitochondrial homeostasis relies on balanced fission and fusion.
- Dnm1 (dynamin-related protein 1) is an external mitochondrial fission factor in yeast.
- Atg44, an intermembrane space protein, was recently identified as a novel fission factor.
Purpose of the Study:
- To elucidate the relationship between Atg44 and Dnm1 in mitochondrial fission.
- To understand the functional cooperation between internal and external fission factors.
Main Methods:
- Analysis of Atg44-deficient yeast cells.
- Microscopy techniques to observe mitochondrial morphology and protein localization.
- Investigating Dnm1 and Atg44 localization at mitochondrial constriction sites.
Main Results:
- Atg44 is required for Dnm1-mediated mitochondrial fission under homeostatic conditions.
- Atg44 deficiency leads to enlarged mitochondria with Dnm1 accumulation and abnormal fission sites.
- Dnm1 alone cannot complete fission without Atg44, as evidenced by intact inner and outer membranes at constrictions.
- Atg44 accumulates at mitochondrial constriction sites, indicating its active role.
Conclusions:
- Atg44 and Dnm1 act cooperatively to execute mitochondrial fission.
- Atg44 functions from the mitochondrial intermembrane space, while Dnm1 acts externally.
- This coordinated action is crucial for proper mitochondrial fission and homeostasis.
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