S L Colegrove, M A Albrecht, D D Friel
Index: J. Gen. Physiol. 115 , 351-70, (2000)
Full Text: HTML
We studied how mitochondrial Ca2+ transport influences [Ca2+](i) dynamics in sympathetic neurons. Cells were treated with thapsigargin to inhibit Ca2+ accumulation by SERCA pumps and depolarized to elevate [Ca2+(i); the recovery that followed repolarization was then examined. The total Ca2+ flux responsible for the [Ca2+](i) recovery was separated into mitochondrial and nonmitochondrial components based on sensitivity to the proton ionophore FCCP, a selective inhibitor of mitochondrial Ca2+ transport in these cells. The nonmitochondrial flux, representing net Ca2+ extrusion across the plasma membrane, has a simple dependence on [Ca2+](i), while the net mitochondrial flux (J(mito)) is biphasic, indicative of Ca+) accumulation during the initial phase of recovery when [Ca2+](i) is high, and net Ca2+ release during later phases of recovery. During each phase, mitochondrial Ca2+ transport has distinct effects on recovery kinetics. J(mito) was separated into components representing mitochondrial Ca2+ uptake and release based on sensitivity to the specific mitochondrial Na(+)/Ca2+ exchange inhibitor, CGP 37157 (CGP). The CGP-resistant (uptake) component of J(mito) increases steeply with [Ca2+](i), as expected for transport by the mitochondrial uniporter. The CGP-sensitive (release) component is inhibited by lowering the intracellular Na(+) concentration and depends on both intra- and extramitochondrial Ca2+ concentration, as expected for the Na(+)/Ca2+ exchanger. Above approximately 400 nM [Ca2+](i), net mitochondrial Ca2+ transport is dominated by uptake and is largely insensitive to CGP. When [Ca2+](i) is approximately 200-300 nM, the net mitochondrial flux is small but represents the sum of much larger uptake and release fluxes that largely cancel. Thus, mitochondrial Ca2+ transport occurs in situ at much lower concentrations than previously thought, and may provide a mechanism for quantitative control of ATP production after brief or low frequency stimuli that raise [Ca(2+)](i) to levels below approximately 500 nM.
Structure | Name/CAS No. | Molecular Formula | Articles |
---|---|---|---|
![]() |
CGP 37157
CAS:75450-34-9 |
C15H11Cl2NOS |
Pulsed infrared radiation excites cultured neonatal spiral a...
2014-09-15 [J. Neurophysiol. 112(6) , 1246-55, (2014)] |
UCP2 modulates single-channel properties of a MCU-dependent ...
2015-12-01 [Pflugers Arch. 467 , 2509-18, (2015)] |
Mitochondrial Ca(2+) uniporter (MCU)-dependent and MCU-indep...
2014-07-01 [Pflugers Arch. 466(7) , 1411-20, (2014)] |
CGP-37157 inhibits the sarcoplasmic reticulum Ca²+ ATPase an...
2011-01-01 [Mol. Pharmacol. 79 , 141-147, (2011)] |
Depolarization-induced calcium responses in sympathetic neur...
2007-01-01 [J. Gen. Physiol. 129 , 29-56, (2006)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved