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ER-Mitochondria contact sites : a new regulator of cellular calcium flux comes into play

(2016) JOURNAL OF CELL BIOLOGY. 214(4). p.367-370
Author
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Abstract
Endoplasmic reticulum (ER)-mitochondria membrane contacts are hotspots for calcium signaling. In this issue, Raturi et al. (2016. J. Cell Biol. http://dx.doi.org/10.1083/jcb.201512077) show that the thioredoxin TMX1 inhibits the calcium pump SERCA2b at ER-mitochondria contact sites, thereby affecting ER-mitochondrial calcium transfer and mitochondrial bioenergetics.
Keywords
ENDOPLASMIC-RETICULUM, CA2+, CALNEXIN, INTERFACE

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Citation

Please use this url to cite or link to this publication:

Chicago
Krols, Michiel, Geert Bultynck, and Sophie Janssens. 2016. “ER-Mitochondria Contact Sites : a New Regulator of Cellular Calcium Flux Comes into Play.” Journal of Cell Biology.
APA
Krols, Michiel, Bultynck, G., & Janssens, S. (2016). ER-Mitochondria contact sites : a new regulator of cellular calcium flux comes into play. JOURNAL OF CELL BIOLOGY.
Vancouver
1.
Krols M, Bultynck G, Janssens S. ER-Mitochondria contact sites : a new regulator of cellular calcium flux comes into play. JOURNAL OF CELL BIOLOGY. 2016. p. 367–70.
MLA
Krols, Michiel, Geert Bultynck, and Sophie Janssens. “ER-Mitochondria Contact Sites : a New Regulator of Cellular Calcium Flux Comes into Play.” JOURNAL OF CELL BIOLOGY 2016 : 367–370. Print.
@misc{8522300,
  abstract     = {Endoplasmic reticulum (ER)-mitochondria membrane contacts are hotspots for calcium signaling. In this issue, Raturi et al. (2016. J. Cell Biol. http://dx.doi.org/10.1083/jcb.201512077) show that the thioredoxin TMX1 inhibits the calcium pump SERCA2b at ER-mitochondria contact sites, thereby affecting ER-mitochondrial calcium transfer and mitochondrial bioenergetics.},
  author       = {Krols, Michiel and Bultynck, Geert and Janssens, Sophie},
  issn         = {0021-9525},
  language     = {eng},
  number       = {4},
  pages        = {367--370},
  series       = {JOURNAL OF CELL BIOLOGY},
  title        = {ER-Mitochondria contact sites : a new regulator of cellular calcium flux comes into play},
  url          = {http://dx.doi.org/10.1083/jcb.201607124},
  volume       = {214},
  year         = {2016},
}

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