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Mitochondrial inner membrane remodeling as a driving force of organelle shaping

  • Mitochondria are dynamic organelles exhibiting diverse shapes. While the variation of shapes, ranging from spheres to elongated tubules, and the transition between them, are clearly seen in many cell types, the molecular mechanisms governing this morphological variability remain poorly understood. Here, we propose a novel shaping mechanism based on the interplay between the inner and outer mitochondrial membranes. Our biophysical model suggests that the difference in surface area, arising from the pulling of the inner membrane into cristae, correlates with mitochondrial elongation. Analysis of live cell super-resolution microscopy data supports this correlation, linking elongated shapes to the extent of cristae in the inner membrane. Knocking down cristae shaping proteins further confirms the impact on mitochondrial shape, demonstrating that defects in cristae formation correlate with mitochondrial sphericity. Our results suggest that the dynamics of the inner mitochondrial membrane are important not only for simply creating surface area required for respiratory capacity, but go beyond that to affect the whole organelle morphology. This work explores the biophysical foundations of individual mitochondrial shape, suggesting potential links between mitochondrial structure and function. This should be of profound significance, particularly in the context of disrupted cristae shaping proteins and their implications in mitochondrial diseases.

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Metadaten
Author:Noga PremingerORCiD, Ben ZuckerORCiD, Sarah HaßdenteufelORCiDGND, Till StephanORCiDGND, Stefan JakobsORCiDGND, Michael M. KozlovORCiD, Maya SchuldinerORCiD
URN:urn:nbn:de:hebis:30:3-858019
URL:https://www.biorxiv.org/content/10.1101/2024.05.27.595707v1
DOI:https://doi.org/10.1101/2024.05.27.595707
Parent Title (English):bioRxiv
Publisher:bioRxiv
Document Type:Preprint
Language:English
Date of Publication (online):2024/05/28
Date of first Publication:2024/05/28
Publishing Institution:Universitätsbibliothek Johann Christian Senckenberg
Release Date:2024/06/12
Issue:2024.05.27.595707 Version 1
Edition:Version 1
Page Number:30
Institutes:Fachübergreifende Einrichtungen / Buchmann Institut für Molekulare Lebenswissenschaften (BMLS)
Dewey Decimal Classification:5 Naturwissenschaften und Mathematik / 57 Biowissenschaften; Biologie / 570 Biowissenschaften; Biologie
Sammlungen:Universitätspublikationen
Licence (German):License LogoCreative Commons - CC BY-NC-ND - Namensnennung - Nicht kommerziell - Keine Bearbeitungen 4.0 International