TY - JOUR
T1 - BHK cells transfected with NCX3 are more resistant to hypoxia followed by reoxygenation than those transfected with NCX1 and NCX2
T2 - Possible relationship with mitochondrial membrane potential
AU - Secondo, Agnese
AU - Staiano, Rosaria Ilaria
AU - Scorziello, Antonella
AU - Sirabella, Rossana
AU - Boscia, Francesca
AU - Adornetto, Annagrazia
AU - Valsecchi, Valeria
AU - Molinaro, Pasquale
AU - Canzoniero, Lorella Maria Teresa
AU - Di Renzo, Gianfranco
AU - Annunziato, Lucio
PY - 2007/12
Y1 - 2007/12
N2 - The specific role played by NCX1, NCX2, and NCX3, the three isoforms of the Na+/Ca2+ exchanger (NCX), has been explored during hypoxic conditions in BHK cells stably transfected with each of these isoforms. Six major findings emerged from the present study: (1) all the three isoforms were highly expressed on the plasma membranes of BHK cells; (2) under physiological conditions, the three NCX isoforms showed similar functional activity; (3) hypoxia plus reoxygenation induced a lower increase of [Ca2+]i in BHK-NCX3-transfected cells than in BHK-NCX1- and BHK-NCX2-transfected cells; (4) NCX3-transfected cells were more resistant to chemical hypoxia plus reoxygenation than NCX1- and NCX2-transfected cells. Interestingly, such augmented resistance was eliminated by CBDMD (10 μM), an inhibitor of NCX and by the specific silencing of the NCX3 isoform; (5) chemical hypoxia plus reoxygenation produced a loss of mitochondrial membrane potential in NCX1- and NCX2-transfected cells, but not in NCX3-transfected cells; (6) the forward mode of operation in NCX3-transfected cells was not affected by ATP depletion, as it occurred in NCX1- and NCX2-transfected cells. Altogether, these results indicate that the brain specifically expressed NCX3 isoform more significantly contributes to the maintenance of [Ca2+]i homeostasis during experimental conditions mimicking ischemia, thereby preventing mitochondrial Δψ collapses and cell death.
AB - The specific role played by NCX1, NCX2, and NCX3, the three isoforms of the Na+/Ca2+ exchanger (NCX), has been explored during hypoxic conditions in BHK cells stably transfected with each of these isoforms. Six major findings emerged from the present study: (1) all the three isoforms were highly expressed on the plasma membranes of BHK cells; (2) under physiological conditions, the three NCX isoforms showed similar functional activity; (3) hypoxia plus reoxygenation induced a lower increase of [Ca2+]i in BHK-NCX3-transfected cells than in BHK-NCX1- and BHK-NCX2-transfected cells; (4) NCX3-transfected cells were more resistant to chemical hypoxia plus reoxygenation than NCX1- and NCX2-transfected cells. Interestingly, such augmented resistance was eliminated by CBDMD (10 μM), an inhibitor of NCX and by the specific silencing of the NCX3 isoform; (5) chemical hypoxia plus reoxygenation produced a loss of mitochondrial membrane potential in NCX1- and NCX2-transfected cells, but not in NCX3-transfected cells; (6) the forward mode of operation in NCX3-transfected cells was not affected by ATP depletion, as it occurred in NCX1- and NCX2-transfected cells. Altogether, these results indicate that the brain specifically expressed NCX3 isoform more significantly contributes to the maintenance of [Ca2+]i homeostasis during experimental conditions mimicking ischemia, thereby preventing mitochondrial Δψ collapses and cell death.
KW - [Ca] homeostasis
KW - Chemical hypoxia
KW - Na-Ca exchanger
KW - Neuroprotection
UR - http://www.scopus.com/inward/record.url?scp=34447636177&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=34447636177&partnerID=8YFLogxK
U2 - 10.1016/j.ceca.2007.01.006
DO - 10.1016/j.ceca.2007.01.006
M3 - Article
C2 - 17343909
AN - SCOPUS:34447636177
SN - 0143-4160
VL - 42
SP - 521
EP - 535
JO - Cell Calcium
JF - Cell Calcium
IS - 6
ER -