4.7 Review

Mitochondrial fusion and fission: The fine-tune balance for cellular homeostasis

Journal

FASEB JOURNAL
Volume 35, Issue 6, Pages -

Publisher

WILEY
DOI: 10.1096/fj.202100067R

Keywords

diseases; dynamics; fission; fusion; mitochondria

Funding

  1. HHS | National Institutes of Health (NIH) [CA185490, CA224306, CA204801, CA231925]

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Mitochondria are dynamic organelles inherited maternally, fulfilling cellular energy demand and playing roles in cell signaling, metabolism, and apoptosis. Maintenance of mitochondrial integrity and homeostasis through fusion and fission is crucial, and imbalance can lead to various diseases.
Mitochondria are highly dynamic, maternally inherited cytoplasmic organelles, which fulfill cellular energy demand through the oxidative phosphorylation system. Besides, they play an active role in calcium and damage-associated molecular patterns signaling, amino acid, and lipid metabolism, and apoptosis. Thus, the maintenance of mitochondrial integrity and homeostasis is extremely critical, which is achieved through continual fusion and fission. Mitochondrial fusion allows the transfer of gene products between mitochondria for optimal functioning, especially under metabolic and environmental stress. On the other hand, fission is crucial for mitochondrial division and quality control. The imbalance between these two processes is associated with various ailments such as cancer, neurodegenerative and cardiovascular diseases. This review discusses the molecular mechanisms that control mitochondrial fusion and fission and how the disruption of mitochondrial dynamics manifests into various disease conditions.

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