期刊
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS
卷 1859, 期 9, 页码 868-877出版社
ELSEVIER SCIENCE BV
DOI: 10.1016/j.bbabio.2018.04.005
关键词
Mitochondria; cAMP; PKA; AKAR; Phosphorylation
资金
- Alzheimer Society of Canada
- Brain Canada
- Natural Sciences and Engineering Research Council [RGPIN-2015-05880]
- Canadian Breast Cancer Foundation [BC-RG-15-3]
- New Brunswick Innovation Foundation
- New Brunswick Health Research Foundation
- Universite de Moncton
Mitochondria are key organelles for cellular homeostasis. They generate the most part of ATP that is used by cells through oxidative phosphorylation. They also produce reactive oxygen species, neurotransmitters and other signaling molecules. They are important for calcium homeostasis and apoptosis. Considering the role of this organelle, it is not surprising that most mitochondrial dysfunctions are linked to the development of pathologies. Various mechanisms adjust mitochondrial activity according to physiological needs. The cAMP-PICA signaling emerged in recent years as a direct and powerful mean to regulate mitochondrial functions. Multiple evidence demonstrates that such pathway can be triggered from cytosol or directly within mitochondria. Notably, specific anchor proteins target PICA to mitochondria whereas enzymes necessary for generation and degradation of cAMP are found directly in these organelles. Mitochondrial PICA targets proteins localized in different compartments of mitochondria, and related to various functions. Alterations of mitochondrial cAMP-PKA signaling affect the development of several physiopathological conditions, including neurodegenerative diseases. It is however difficult to discriminate between the effects of cAMP-PKA signaling triggered from cytosol or directly in mitochondria. The specific roles of PICA localized in different mitochondrial compartments are also not completely understood. The aim of this work is to review the role of cAMP-PKA signaling in mitochondria] (patho)physiology.
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