» Articles » PMID: 39172335

Hormonal Orchestra: Mastering Mitochondria's Role in Health and Disease

Overview
Journal Endocrine
Specialty Endocrinology
Date 2024 Aug 22
PMID 39172335
Authors
Affiliations
Soon will be listed here.
Abstract

Mitochondria is a subcellular organelle involved in the pathogenesis of cellular stress, immune responses, differentiation, metabolic disorders, aging, and death by regulating process of fission, fusion, mitophagy, and transport. However, an increased interest in mitochondria as powerhouse for ATP production, the mechanisms of mitochondria-mediated cellular dysfunction in response to hormonal interaction remains unknown. Mitochondrial matrix contains chaperones and proteases that regulate intrinsic apoptosis pathway through pro-apoptotic Bcl-2 family's proteins Bax/Bak, and Cyt C release, and induces caspase-dependent and independent cells death. Energy and growth regulators such as thyroid hormones have profound effect on mitochondrial inner membrane protein and lipid compositions, ATP production by regulating oxidative phosphorylation system. Mitochondria contain cholesterol side-chain cleavage enzyme, P450scc, ferredoxin, and ferredoxin reductase providing an essential site for steroid hormones biosynthesis. In line with this, neurohormones such as oxytocin, vasopressin, and melatonin are correlated with mitochondrial integrity, displaying therapeutic implications for inflammatory and immune responses. Melatonin's also displayed protective role against oxidative stress and mitochondrial synthesis of ROS, suggesting a defense mechanism against aging-related diseases. An imbalance in mitochondrial bioenergetics can cause neurodegenerative disorders, cardiovascular diseases, and cancers. Hormone-induced PGC-1α stimulates mitochondrial biogenesis via activation of NRF1 and NRF2, which in turn triggers mtTFA in brown adipose and cardiac myocytes. Mitochondria can be transferred through cells merging, exosome-mediated transfer, and tunneling through nanotubes. By delineating the underlying molecular mechanism of hormonal mitochondrial interaction, this study reviews the dynamics mechanisms of mitochondria and its effects on cellular level, health, diseases, and therapeutic strategies targeting mitochondrial diseases.

Citing Articles

Mitochondria Express Functional Signaling Ligand-Binding Receptors that Regulate their Biological Responses - the Novel Role of Mitochondria as Stress-Response Sentinels.

Brzezniakiewicz-Janus K, Jarczak J, Konopko A, Ratajczak J, Kucia M, Ratajczak M Stem Cell Rev Rep. 2025; .

PMID: 39888573 DOI: 10.1007/s12015-025-10847-2.


Exploring the bidirectional relationship between chronic kidney disease and obstructive sleep apnea.

Lin Y, Lin K, Chen J Sleep. 2025; 48(3).

PMID: 39801372 PMC: 11893522. DOI: 10.1093/sleep/zsaf002.

References
1.
Heinonen S, Jokinen R, Rissanen A, Pietilainen K . White adipose tissue mitochondrial metabolism in health and in obesity. Obes Rev. 2019; 21(2):e12958. DOI: 10.1111/obr.12958. View

2.
Jung J, Gokhale S, Xie P . TRAF3: A novel regulator of mitochondrial physiology and metabolic pathways in B lymphocytes. Front Oncol. 2023; 13:1081253. PMC: 9911533. DOI: 10.3389/fonc.2023.1081253. View

3.
Yadav T, Gau D, Roy P . Mitochondria-actin cytoskeleton crosstalk in cell migration. J Cell Physiol. 2022; 237(5):2387-2403. PMC: 9945482. DOI: 10.1002/jcp.30729. View

4.
Schiaffarino O, Valdivieso Gonzalez D, Garcia-Perez I, Penalva D, Almendro-Vedia V, Natale P . Mitochondrial membrane models built from native lipid extracts: Interfacial and transport properties. Front Mol Biosci. 2022; 9:910936. PMC: 9538489. DOI: 10.3389/fmolb.2022.910936. View

5.
Kafkova A, Tilokani L, Trcka F, Sramkova V, Vancova M, Bily T . Selective and reversible disruption of mitochondrial inner membrane protein complexes by lipophilic cations. Mitochondrion. 2022; 68:60-71. DOI: 10.1016/j.mito.2022.11.006. View