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SLC25A23 augments mitochondrial Ca²⁺ uptake, interacts with MCU, and induces oxidative stress-mediated cell death.

Publication ,  Journal Article
Hoffman, NE; Chandramoorthy, HC; Shanmughapriya, S; Zhang, XQ; Vallem, S; Doonan, PJ; Malliankaraman, K; Guo, S; Rajan, S; Elrod, JW; Koch, WJ ...
Published in: Mol Biol Cell
March 2014

Emerging findings suggest that two lineages of mitochondrial Ca(2+) uptake participate during active and resting states: 1) the major eukaryotic membrane potential-dependent mitochondrial Ca(2+) uniporter and 2) the evolutionarily conserved exchangers and solute carriers, which are also involved in ion transport. Although the influx of Ca(2+) across the inner mitochondrial membrane maintains metabolic functions and cell death signal transduction, the mechanisms that regulate mitochondrial Ca(2+) accumulation are unclear. Solute carriers--solute carrier 25A23 (SLC25A23), SLC25A24, and SLC25A25--represent a family of EF-hand-containing mitochondrial proteins that transport Mg-ATP/Pi across the inner membrane. RNA interference-mediated knockdown of SLC25A23 but not SLC25A24 and SLC25A25 decreases mitochondrial Ca(2+) uptake and reduces cytosolic Ca(2+) clearance after histamine stimulation. Ectopic expression of SLC25A23 EF-hand-domain mutants exhibits a dominant-negative phenotype of reduced mitochondrial Ca(2+) uptake. In addition, SLC25A23 interacts with mitochondrial Ca(2+) uniporter (MCU; CCDC109A) and MICU1 (CBARA1) while also increasing IMCU. In addition, SLC25A23 knockdown lowers basal mROS accumulation, attenuates oxidant-induced ATP decline, and reduces cell death. Further, reconstitution with short hairpin RNA-insensitive SLC25A23 cDNA restores mitochondrial Ca(2+) uptake and superoxide production. These findings indicate that SLC25A23 plays an important role in mitochondrial matrix Ca(2+) influx.

Duke Scholars

Published In

Mol Biol Cell

DOI

EISSN

1939-4586

Publication Date

March 2014

Volume

25

Issue

6

Start / End Page

936 / 947

Location

United States

Related Subject Headings

  • Reactive Oxygen Species
  • RNA, Small Interfering
  • Protein Structure, Tertiary
  • Oxygen Consumption
  • Oxidative Stress
  • Mitochondrial Proteins
  • Mitochondrial Membrane Transport Proteins
  • Mitochondria
  • Membrane Potential, Mitochondrial
  • Ion Transport
 

Citation

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Hoffman, N. E., Chandramoorthy, H. C., Shanmughapriya, S., Zhang, X. Q., Vallem, S., Doonan, P. J., … Madesh, M. (2014). SLC25A23 augments mitochondrial Ca²⁺ uptake, interacts with MCU, and induces oxidative stress-mediated cell death. Mol Biol Cell, 25(6), 936–947. https://doi.org/10.1091/mbc.E13-08-0502
Hoffman, Nicholas E., Harish C. Chandramoorthy, Santhanam Shanmughapriya, Xueqian Q. Zhang, Sandhya Vallem, Patrick J. Doonan, Karthik Malliankaraman, et al. “SLC25A23 augments mitochondrial Ca²⁺ uptake, interacts with MCU, and induces oxidative stress-mediated cell death.Mol Biol Cell 25, no. 6 (March 2014): 936–47. https://doi.org/10.1091/mbc.E13-08-0502.
Hoffman NE, Chandramoorthy HC, Shanmughapriya S, Zhang XQ, Vallem S, Doonan PJ, et al. SLC25A23 augments mitochondrial Ca²⁺ uptake, interacts with MCU, and induces oxidative stress-mediated cell death. Mol Biol Cell. 2014 Mar;25(6):936–47.
Hoffman, Nicholas E., et al. “SLC25A23 augments mitochondrial Ca²⁺ uptake, interacts with MCU, and induces oxidative stress-mediated cell death.Mol Biol Cell, vol. 25, no. 6, Mar. 2014, pp. 936–47. Pubmed, doi:10.1091/mbc.E13-08-0502.
Hoffman NE, Chandramoorthy HC, Shanmughapriya S, Zhang XQ, Vallem S, Doonan PJ, Malliankaraman K, Guo S, Rajan S, Elrod JW, Koch WJ, Cheung JY, Madesh M. SLC25A23 augments mitochondrial Ca²⁺ uptake, interacts with MCU, and induces oxidative stress-mediated cell death. Mol Biol Cell. 2014 Mar;25(6):936–947.

Published In

Mol Biol Cell

DOI

EISSN

1939-4586

Publication Date

March 2014

Volume

25

Issue

6

Start / End Page

936 / 947

Location

United States

Related Subject Headings

  • Reactive Oxygen Species
  • RNA, Small Interfering
  • Protein Structure, Tertiary
  • Oxygen Consumption
  • Oxidative Stress
  • Mitochondrial Proteins
  • Mitochondrial Membrane Transport Proteins
  • Mitochondria
  • Membrane Potential, Mitochondrial
  • Ion Transport