TY - JOUR
T1 - Activity of the mitochondrial calcium uniporter varies greatly between tissues
AU - Fieni, Francesca
AU - Lee, Sung Bae
AU - Jan, Yuh Nung
AU - Kirichok, Yuriy
N1 - Funding Information:
This work was funded by the NIH Director’s New Innovator Award DP2OD004656-01.
PY - 2012
Y1 - 2012
N2 - The mitochondrial calcium uniporter is a highly selective channel responsible for mitochondrial Ca 2+uptake. The mitochondrial calcium uniporter shapes cytosolic Ca 2+signals, controls mitochondrial ATP production, and is involved in cell death. Here using direct patch-clamp recording from the inner mitochondrial membrane, we compare mitochondrial calcium uniporter activity in mouse heart, skeletal muscle, liver, kidney and brown fat. Surprisingly, heart mitochondria show a dramatically lower mitochondrial calcium uniporter current density than the other tissues studied. Similarly, in Drosophila flight muscle, mitochondrial calcium uniporter activity is barely detectable compared with that in other fly tissues. As mitochondria occupy up to 40% of the cell volume in highly metabolically active heart and flight muscle, low mitochondrial calcium uniporter activity is likely essential to avoid cytosolic Ca 2+sink due to excessive mitochondrial Ca 2+uptake. Simultaneously, low mitochondrial calcium uniporter activity may also prevent mitochondrial Ca 2+overload in such active tissues exposed to frequent cytosolic Ca 2+activity.
AB - The mitochondrial calcium uniporter is a highly selective channel responsible for mitochondrial Ca 2+uptake. The mitochondrial calcium uniporter shapes cytosolic Ca 2+signals, controls mitochondrial ATP production, and is involved in cell death. Here using direct patch-clamp recording from the inner mitochondrial membrane, we compare mitochondrial calcium uniporter activity in mouse heart, skeletal muscle, liver, kidney and brown fat. Surprisingly, heart mitochondria show a dramatically lower mitochondrial calcium uniporter current density than the other tissues studied. Similarly, in Drosophila flight muscle, mitochondrial calcium uniporter activity is barely detectable compared with that in other fly tissues. As mitochondria occupy up to 40% of the cell volume in highly metabolically active heart and flight muscle, low mitochondrial calcium uniporter activity is likely essential to avoid cytosolic Ca 2+sink due to excessive mitochondrial Ca 2+uptake. Simultaneously, low mitochondrial calcium uniporter activity may also prevent mitochondrial Ca 2+overload in such active tissues exposed to frequent cytosolic Ca 2+activity.
UR - http://www.scopus.com/inward/record.url?scp=84871891066&partnerID=8YFLogxK
U2 - 10.1038/ncomms2325
DO - 10.1038/ncomms2325
M3 - Article
AN - SCOPUS:84871891066
SN - 2041-1723
VL - 3
JO - Nature Communications
JF - Nature Communications
M1 - 1317
ER -