Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Distinct fission signatures predict mitochondrial degradation or biogenesis

Domain:

healthcare

Record type:

paper
Creator:
KleReyWinZag
Editor:
EcoExpUniExp
Publisher:
CCSDNat
Host:avatar
Comment in Revolutionary view of two ways to split a mitochondrion. Chakrabarti R, Higgs HN. Nature. 2021 May;593(7859):346-347. doi: 10.1038/d41586-021-01173-x. PMID: 33953387 International audience Mitochondrial fission is a highly regulated process that, when disrupted, can alter metabolism, proliferation and apoptosis1-3. Dysregulation has been linked to neurodegeneration3,4, cardiovascular disease3 and cancer5. Key components of the fission machinery include the endoplasmic reticulum6 and actin7, which initiate constriction before dynamin-related protein 1 (DRP1)8 binds to the outer mitochondrial membrane via adaptor proteins9-11, to drive scission12. In the mitochondrial life cycle, fission enables both biogenesis of new mitochondria and clearance of dysfunctional mitochondria through mitophagy1,13. Current models of fission regulation cannot explain how those dual fates are decided. However, uncovering fate determinants is challenging, as fission is unpredictable, and mitochondrial morphology is heterogeneous, with ultrastructural features that are below the diffraction limit. Here, we used live-cell structured illumination microscopy to capture mitochondrial dynamics. By analysing hundreds of fissions in African green monkey Cos-7 cells and mouse cardiomyocytes, we discovered two functionally and mechanistically distinct types of fission. Division at the periphery enables damaged material to be shed into smaller mitochondria destined for mitophagy, whereas division at the midzone leads to the proliferation of mitochondria. Both types are mediated by DRP1, but endoplasmic reticulum- and actin-mediated pre-constriction and the adaptor MFF govern only midzone fission. Peripheral fission is preceded by lysosomal contact and is regulated by the mitochondrial outer membrane protein FIS1. These distinct molecular mechanisms explain how cells independently regulate fission, leading to distinct mitochondrial fates.

Visit

pasteur.hal.science

Tags

MESH: ActinsMESH: AnimalsMESH: Cells, CulturedMESH: Chlorocebus aethiopsMESH: DNA, MitochondrialMESH: DynaminsMESH: Endoplasmic ReticulumMESH: HumansMESH: LysosomesMESH: Membrane Proteins+8

Licenses

info:eu-repo/semantics/OpenAccess

Similar

Distinct Microbial Signatures between Periodontal Profile ClassesPlasma Proteomics Reveals Distinct Signatures in Occult and Microfilaremic Loa loa InfectionsZambian terrestrial vertebrates with or without 12S, 16S, or mitochondrial references.Distinct Antibody Signatures Associated with Different Malaria Transmission Intensities in Zambia and ZimbabweDistinct immune activation and cytokine signatures distinguish HIV-1, HIV-2, and HIV-dual infectionsDistinct amino acid signatures and neutralization sensitivity of plasma- and CSF-derived HIV-1 subtype C clones

Distinct Microbial Signatures between Periodontal Profile Classes

Precise classification of periodontal disease has been the objective of concerted efforts and has le

Plasma Proteomics Reveals Distinct Signatures in Occult and Microfilaremic Loa loa Infections

Background: Loiasis, caused by the filarial nematode Loa loa, imposes a significant disease burden i

Zambian terrestrial vertebrates with or without 12S, 16S, or mitochondrial references.

Species from the Zambia terrestrial vertebrate list (S1 Table), indicating whether reference sequ

Distinct Antibody Signatures Associated with Different Malaria Transmission Intensities in Zambia and Zimbabwe

As malaria approaches elimination in many areas of the world, monitoring the effect of control measu

Distinct immune activation and cytokine signatures distinguish HIV-1, HIV-2, and HIV-dual infections

This dataset consists of metadata for the participants whose blood samples were collected for immuno

Distinct amino acid signatures and neutralization sensitivity of plasma- and CSF-derived HIV-1 subtype C clones

Abstract Background Broadly neutrali