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PMID: 9151670 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Mitochondrial regulation of store-operated calcium signaling in T lymphocytes.

The Journal of cell biology ·Vol. 137 ·No. 3 ·1997-05-05 ·Pages 633-48

Hoth M, Fanger CM, Lewis RS

Abstract

Mitochondria act as potent buffers of intracellular Ca2+ in many cells, but a more active role in modulating the generation of Ca2+ signals is not well established. We have investigated the ability of mitochondria to modulate store-operated or "capacitative" Ca2+ entry in Jurkat leukemic T cells and human T lymphocytes using fluorescence imaging techniques. Depletion of the ER Ca2+ store with thapsigargin (TG) activates Ca2+ release-activated Ca2+ (CRAC) channels in T cells, and the ensuing influx of Ca2+ loads a TG-insensitive intracellular store that by several criteria appears to be mitochondria. Loading of this store is prevented by carbonyl cyanide m-chlorophenylhydrazone or by antimycin A1 + oligomycin, agents that are known to inhibit mitochondrial Ca2+ import by dissipating the mitochondrial membrane potential. Conversely, intracellular Na+ depletion, which inhibits Na+-dependent Ca2+ export from mitochondria, enhances store loading. In addition, we find that rhod-2 labels mitochondria in T cells, and it reports changes in Ca2+ levels that are consistent with its localization in the TG-insensitive store. Ca2+ uptake by the mitochondrial store is sensitive (threshold is <400 nM cytosolic Ca2+), rapid (detectable within 8 s), and does not readily saturate. The rate of mitochondrial Ca2+ uptake is sensitive to extracellular [Ca2+], indicating that mitochondria sense Ca2+ gradients near CRAC channels. Remarkably, mitochondrial uncouplers or Na+ depletion prevent the ability of T cells to maintain a high rate of capacitative Ca2+ entry over prolonged periods of >10 min. Under these conditions, the rate of Ca2+ influx in single cells undergoes abrupt transitions from a high influx to a low influx state. These results demonstrate that mitochondria not only buffer the Ca2+ that enters T cells via store-operated Ca2+ channels, but also play an active role in modulating the rate of capacitative Ca2+ entry.

MeSH Terms
Calcium/physiology Calcium Channels/physiology Cell Compartmentation Cell Line Endoplasmic Reticulum/metabolism Humans Ionomycin/pharmacology Mitochondria/drug effects,physiology Signal Transduction Sodium/metabolism T-Lymphocytes/physiology Thapsigargin/pharmacology Video Recording
Chemicals
Calcium Channels Ionomycin Thapsigargin Sodium Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Hoth M
Department of Molecular and Cellular Physiology, Stanford University School of Medicine, California 94305-5426, USA. [email protected]
Fanger C M
Lewis R S
References (63)
63 references, click to expand
  1. A reevaluation of the role of mitochondria in neuronal Ca2+ homeostasis.
    J Neurochem. 1996 Jan;66(1):403-11 PMID: 8522981
  2. Fluorescent indicators for cytosolic calcium based on rhodamine and fluorescein chromophores.
    J Biol Chem. 1989 May 15;264(14):8171-8 PMID: 2498308
  3. Dominant role of mitochondria in clearance of large Ca2+ loads from rat adrenal chromaffin cells.
    Neuron. 1996 Jan;16(1):219-28 PMID: 8562086
  4. A role for calcium influx in the regulation of mitochondrial calcium in endothelial cells.
    J Biol Chem. 1996 May 3;271(18):10753-9 PMID: 8631885
  5. Polarity of T cell shape, motility, and sensitivity to antigen.
    Immunity. 1996 May;4(5):421-30 PMID: 8630728
  6. Intracellular ADP modulates the Ca2+ release-activated Ca2+ current in a temperature- and Ca2+-dependent Way.
    J Biol Chem. 1996 Apr 12;271(15):8582-7 PMID: 8621486
  7. Subcellular imaging of intramitochondrial Ca2+ with recombinant targeted aequorin: significance for the regulation of pyruvate dehydrogenase activity.
    Proc Natl Acad Sci U S A. 1996 May 28;93(11):5489-94 PMID: 8643602
  8. Role of kinases and the phosphatase calcineurin in the nuclear shuttling of transcription factor NF-AT4.
    Nature. 1996 Jul 25;382(6589):370-3 PMID: 8684469
  9. Rapid shuttling of NF-AT in discrimination of Ca2+ signals and immunosuppression.
    Nature. 1996 Oct 31;383(6603):837-40 PMID: 8893011
  10. Ca2+ clearance mechanisms in isolated rat adrenal chromaffin cells.
    J Physiol. 1996 Apr 15;492 ( Pt 2):329-46 PMID: 9019533
  11. Mitochondrial participation in the intracellular Ca2+ network.
    J Cell Biol. 1997 Feb 24;136(4):833-44 PMID: 9049249
  12. Glutamate-induced neuronal death: a succession of necrosis or apoptosis depending on mitochondrial function.
    Neuron. 1995 Oct;15(4):961-73 PMID: 7576644
  13. FCCP releases Ca2+ from a non-mitochondrial store in an identified Helisoma neuron.
    Brain Res. 1991 Jun 14;551(1-2):311-4 PMID: 1913158
  14. Mitogen-induced oscillations of cytosolic Ca2+ and transmembrane Ca2+ current in human leukemic T cells.
    Cell Regul. 1989 Nov;1(1):99-112 PMID: 2519622
  15. Imaging early steps of human T cell activation by antigen-presenting cells.
    J Immunol. 1992 May 1;148(9):2643-53 PMID: 1349319
  16. Rapid changes of mitochondrial Ca2+ revealed by specifically targeted recombinant aequorin.
    Nature. 1992 Jul 23;358(6384):325-7 PMID: 1322496
  17. Release of intracellular calcium and modulation of membrane currents by caffeine in bull-frog sympathetic neurones.
    J Physiol. 1992 Jan;445:515-35 PMID: 1380086
  18. Calcium fluxes in T lymphocytes.
    J Biol Chem. 1992 Dec 25;267(36):25864-72 PMID: 1464601
  19. Mitogen-regulated Ca2+ current of T lymphocytes is activated by depletion of intracellular Ca2+ stores.
    Proc Natl Acad Sci U S A. 1993 Jul 1;90(13):6295-9 PMID: 8392195
  20. Kinetics of calcium transport across the lymphocyte plasma membrane.
    Am J Physiol. 1993 Aug;265(2 Pt 1):C321-7 PMID: 8396324
  21. Calcium influx and its control by calcium release.
    Curr Opin Neurobiol. 1993 Jun;3(3):368-74 PMID: 8396477
  22. Calcium release-activated calcium current in rat mast cells.
    J Physiol. 1993 Jun;465:359-86 PMID: 8229840
  23. Microdomains with high Ca2+ close to IP3-sensitive channels that are sensed by neighboring mitochondria.
    Science. 1993 Oct 29;262(5134):744-7 PMID: 8235595
  24. Is there a Na+/Ca2+ exchanger in macrophages and in lymphocytes?
    Pflugers Arch. 1993 Sep;424(5-6):448-55 PMID: 8255728
  25. The inositol phosphate-calcium signaling system in nonexcitable cells.
    Endocr Rev. 1993 Oct;14(5):610-31 PMID: 8262009
  26. Mitochondria buffer physiological calcium loads in cultured rat dorsal root ganglion neurons.
    J Neurosci. 1994 Jan;14(1):348-56 PMID: 8283242
  27. Modulation of intramitochondrial free Ca2+ concentration by antagonists of Na(+)-Ca2+ exchange.
    Trends Pharmacol Sci. 1993 Nov;14(11):408-13 PMID: 8296399
  28. The effect of mitochondrial inhibitors on calcium homeostasis in tumor mast cells.
    Am J Physiol. 1990 Feb;258(2 Pt 1):C217-26 PMID: 2137675
  29. Thapsigargin, a tumor promoter, discharges intracellular Ca2+ stores by specific inhibition of the endoplasmic reticulum Ca2(+)-ATPase.
    Proc Natl Acad Sci U S A. 1990 Apr;87(7):2466-70 PMID: 2138778
  30. Mechanisms by which mitochondria transport calcium.
    Am J Physiol. 1990 May;258(5 Pt 1):C755-86 PMID: 2185657
  31. Regulation of the intracellular free calcium concentration in single rat dorsal root ganglion neurones in vitro.
    J Physiol. 1990 Jun;425:85-115 PMID: 2213592
  32. Reassessment of Fura-2 and the ratio method for determination of intracellular Ca2+ concentrations.
    Cell Calcium. 1991 Jan;12(1):29-37 PMID: 2015620
  33. Intracellular calcium dependence of gene expression in single T lymphocytes.
    Proc Natl Acad Sci U S A. 1994 Mar 29;91(7):2873-7 PMID: 8146203
  34. Receptor-activated Ca2+ influx: how many mechanisms for how many channels?
    Trends Pharmacol Sci. 1994 Mar;15(3):77-83 PMID: 8184490
  35. Signaling between intracellular Ca2+ stores and depletion-activated Ca2+ channels generates [Ca2+]i oscillations in T lymphocytes.
    J Gen Physiol. 1994 Mar;103(3):365-88 PMID: 8195779
  36. An FCCP-sensitive Ca2+ store in bullfrog sympathetic neurons and its participation in stimulus-evoked changes in [Ca2+]i.
    J Neurosci. 1994 Jul;14(7):4007-24 PMID: 8027759
  37. Permeation of hydrophilic solutes through mitochondrial outer membranes: review on mitochondrial porins.
    Biochim Biophys Acta. 1994 Jun 29;1197(2):167-96 PMID: 8031826
  38. Mitochondrial Ca2+ homeostasis in intact cells.
    J Cell Biol. 1994 Sep;126(5):1183-94 PMID: 8063855
  39. Mitochondrial calcium transport: physiological and pathological relevance.
    Am J Physiol. 1994 Aug;267(2 Pt 1):C313-39 PMID: 8074170
  40. Modulation of Ca2+ influx dependent on store depletion by intracellular adenine-guanine nucleotide levels.
    J Biol Chem. 1994 Sep 23;269(38):23597-602 PMID: 8089128
  41. Antigen and thapsigargin promote influx of Ca2+ in rat basophilic RBL-2H3 cells by ostensibly similar mechanisms that allow filling of inositol 1,4,5-trisphosphate-sensitive and mitochondrial Ca2+ stores.
    Biochem J. 1994 Dec 1;304 ( Pt 2):431-40 PMID: 7998977
  42. The calcium current activated by T cell receptor and store depletion in human lymphocytes is absent in a primary immunodeficiency.
    J Biol Chem. 1994 Dec 23;269(51):32327-35 PMID: 7798233
  43. Mitochondrial free Ca2+ concentration in living cells.
    J Bioenerg Biomembr. 1994 Oct;26(5):487-93 PMID: 7896764
  44. Physiological role of mitochondrial Ca2+ transport.
    J Bioenerg Biomembr. 1994 Oct;26(5):495-508 PMID: 7896765
  45. Rapid inactivation of depletion-activated calcium current (ICRAC) due to local calcium feedback.
    J Gen Physiol. 1995 Feb;105(2):209-26 PMID: 7760017
  46. Slow calcium-dependent inactivation of depletion-activated calcium current. Store-dependent and -independent mechanisms.
    J Biol Chem. 1995 Jun 16;270(24):14445-51 PMID: 7540169
  47. Potassium and calcium channels in lymphocytes.
    Annu Rev Immunol. 1995;13:623-53 PMID: 7612237
  48. Decoding of cytosolic calcium oscillations in the mitochondria.
    Cell. 1995 Aug 11;82(3):415-24 PMID: 7634331
  49. Synchronization of calcium waves by mitochondrial substrates in Xenopus laevis oocytes.
    Nature. 1995 Oct 5;377(6548):438-41 PMID: 7566122
  50. Characterization of cyclic adenosine diphosphate-ribose-induced Ca2+ release in T lymphocyte cell lines.
    J Immunol. 1995 Oct 1;155(7):3353-9 PMID: 7561029
  51. ATP depletion inhibits capacitative Ca2+ entry in rat thymic lymphocytes.
    Am J Physiol. 1995 Sep;269(3 Pt 1):C766-74 PMID: 7573408
  52. Characterization of T cell mutants with defects in capacitative calcium entry: genetic evidence for the physiological roles of CRAC channels.
    J Cell Biol. 1995 Nov;131(3):655-67 PMID: 7593187
  53. Mitochondrial calcium uptake from physiological-type pulses of calcium. A description of the rapid uptake mode.
    J Biol Chem. 1995 Nov 17;270(46):27510-5 PMID: 7499209
  54. Capacitative calcium entry.
    Biochem J. 1995 Nov 15;312 ( Pt 1):1-11 PMID: 7492298
  55. Lymphocyte capping and lymphocyte migration as associated events in the in vivo antigen trapping process. An electron-microscopic autoradiographic study in the spleen of mice.
    Cell Tissue Res. 1975 Aug 18;161(2):211-7 PMID: 1175205
  56. [Electronmicroscopic and immunohistochemical studies on human lymphocytes].
    Blut. 1976 Feb;32(2):87-102 PMID: 55285
  57. Intracellular pH measurements in Ehrlich ascites tumor cells utilizing spectroscopic probes generated in situ.
    Biochemistry. 1979 May 29;18(11):2210-8 PMID: 36128
  58. Mitochondrial outer membrane contains a protein producing nonspecific diffusion channels.
    J Biol Chem. 1980 Mar 10;255(5):1771-4 PMID: 7354054
  59. Intracellular pH.
    Physiol Rev. 1981 Apr;61(2):296-434 PMID: 7012859
  60. Intracellular calcium homeostasis.
    Annu Rev Biochem. 1987;56:395-433 PMID: 3304139
  61. Early signal transduction by the antigen receptor without commitment to T cell activation.
    Science. 1988 May 20;240(4855):1029-31 PMID: 3259335
  62. Plasmacytoid T cells: a cell population normally present in the reactive lymph node. An immunohistochemical and electronmicroscopic study.
    Hum Pathol. 1988 Sep;19(9):1085-92 PMID: 3262083
  63. Towards the molecular basis for the regulation of mitochondrial dehydrogenases by calcium ions.
    Mol Cell Biochem. 1995 Aug-Sep;149-150:203-12 PMID: 8569730
Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1997-05-05
Pages
633-48
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2139882
Subset
IM
Grants
NIGMS NIH HHS · R01 GM045374 · United States
NIGMS NIH HHS · GM45374 · United States
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