Summary of ssbd-repos-000161

SSBD:database
URL

Name
ssbd-repos-000161 (161-Tanaka-MEFMitochondrial)
URL
DOI
-

Title
Electron microimage of mitochondrial structure in control and Pre3 KO mice MEFs.
Description
-
Submited Date
-
Release Date
2021-09-30
Updated Date
-
License
Funding information
-
File formats
Data size
6.4 MB

Organism
Mus musculus
Strain
-
Cell Line
MEF, Pex3 KO MEF (C57BL/6) cell
Genes
Pex3
Proteins
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GO Molecular Function (MF)
NA
GO Biological Process (BP)
gene expression
GO Cellular Component (CC)
mitochondrial crista
Study Type
Mice, Mitochondrial Dynamics, Inbred C57BL, Mitochondria, Mitochondrial Dynamics/physiology, Mitochondria/metabolism, Cell Line
Imaging Methods
electron microscopy

Method Summary
-
Related paper(s)

Hideaki Tanaka, Tomohiko Okazaki, Saeko Aoyama, Mutsumi Yokota, Masato Koike, Yasushi Okada, Yukio Fujiki, Yukiko Gotoh (2019) Peroxisomes control mitochondrial dynamics and the mitochondrion-dependent apoptosis pathway., Journal of cell science, Volume 132, Number 11

Published in 2019 May 31 (Electronic publication in May 31, 2019, midnight )

(Abstract) Peroxisomes cooperate with mitochondria in the performance of cellular metabolic functions, such as fatty acid oxidation and the maintenance of redox homeostasis. However, whether peroxisomes also regulate mitochondrial fission-fusion dynamics or mitochondrion-dependent apoptosis remained unclear. We now show that genetic ablation of the peroxins Pex3 or Pex5, which are essential for peroxisome biogenesis, results in mitochondrial fragmentation in mouse embryonic fibroblasts (MEFs) in a manner dependent on Drp1 (also known as DNM1L). Conversely, treatment with 4-PBA, which results in peroxisome proliferation, resulted in mitochondrial elongation in wild-type MEFs, but not in Pex3-knockout MEFs. We further found that peroxisome deficiency increased the levels of cytosolic cytochrome c and caspase activity under basal conditions without inducing apoptosis. It also greatly enhanced etoposide-induced caspase activation and apoptosis, which is indicative of an enhanced cellular sensitivity to death signals. Taken together, our data unveil a previously unrecognized role for peroxisomes in the regulation of mitochondrial dynamics and mitochondrion-dependent apoptosis. Effects of peroxin gene mutations on mitochondrion-dependent apoptosis may contribute to pathogenesis of peroxisome biogenesis disorders.This article has an associated First Person interview with the first author of the paper.
(MeSH Terms)

Contact(s)
Tomohiko Okazaki
Organization(s)
Hokkaido University , Institute for Genetic Medicine , Laboratory of Molecular Cell Biology
Image Data Contributors
Quantitative Data Contributors

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