Mitochondrial VDAC, the Na+/Ca2+ exchanger, and the Ca2+ uniporter in Ca2+ dynamics and signaling

36Citations
Citations of this article
37Readers
Mendeley users who have this article in their library.
Get full text

Abstract

Mitochondrial Ca2+ uptake and release play pivotal roles in cellular physiology by regulating intracellular Ca2+ signaling, energy metabolism, and cell death. Ca2+ transport across the inner and outer mitochondrial membranes (IMM, OMM, respectively), is mediated by several proteins, including the voltage-dependent anion channel 1 (VDAC1) in the OMM, and the mitochondrial Ca2+ uniporter (MCU) and Na+-dependent mitochondrial Ca2+ efflux transporter, (the NCLX), both in the IMM. By transporting Ca2+ across the OMM to the mitochondrial inner-membrane space (IMS), VDAC1 allows Ca2+ access to the MCU, facilitating transport of Ca2+ to the matrix, and also from the IMS to the cytosol. Intra-mitochondrial Ca2+ controls energy production and metabolism by modulating critical enzymes in the tricarboxylic acid (TCA) cycle and fatty acid oxidation. Thus, by transporting Ca2+, VDAC1 plays a fundamental role in regulating mitochondrial Ca2+ homeostasis, oxidative phosphorylation, and Ca2+ crosstalk among mitochondria, cytoplasm, and the endoplasmic reticulum (ER). VDAC1 has also been recognized as a key protein in mitochondria-mediated apoptosis, and apoptosis stimuli induce overexpression of the protein in a Ca2+-dependent manner. The overexpressed VDAC1 undergoes oligomerization leading to the formation of a channel, through which apoptogenic agents can be released. Here, we review the roles of VDAC1 in mitochondrial Ca2+ homeostasis, in apoptosis, and in diseases associated with mitochondria dysfunction.

References Powered by Scopus

The versatility and universality of calcium signalling

4820Citations
N/AReaders
Get full text

Calcium signalling: Dynamics, homeostasis and remodelling

4634Citations
N/AReaders
Get full text

Loss of cyclophilin D reveals a critical role for mitochondrial permeability transition in cell death

1965Citations
N/AReaders
Get full text

Cited by Powered by Scopus

Deregulated mitochondrial microRNAs in Alzheimer's disease: Focus on synapse and mitochondria

86Citations
N/AReaders
Get full text

Building a Bridge Between NMDAR-Mediated Excitotoxicity and Mitochondrial Dysfunction in Chronic and Acute Diseases

47Citations
N/AReaders
Get full text

Mitochondrial VDAC1: A Potential Therapeutic Target of Inflammation-Related Diseases and Clinical Opportunities

37Citations
N/AReaders
Get full text

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Cite

CITATION STYLE

APA

Shoshan-Barmatz, V., & De, S. (2017). Mitochondrial VDAC, the Na+/Ca2+ exchanger, and the Ca2+ uniporter in Ca2+ dynamics and signaling. In Advances in Experimental Medicine and Biology (Vol. 981, pp. 323–347). Springer New York LLC. https://doi.org/10.1007/978-3-319-55858-5_13

Readers over time

‘18‘19‘20‘21‘22‘23‘24036912

Readers' Seniority

Tooltip

PhD / Post grad / Masters / Doc 15

75%

Researcher 3

15%

Professor / Associate Prof. 2

10%

Readers' Discipline

Tooltip

Biochemistry, Genetics and Molecular Bi... 8

44%

Agricultural and Biological Sciences 4

22%

Medicine and Dentistry 4

22%

Immunology and Microbiology 2

11%

Save time finding and organizing research with Mendeley

Sign up for free
0